ナガオ ケイイチ
永尾 敬一准教授
Keiichi NAGAO

■研究者基本情報

組織

  • 教育学部 学校教育教員養成課程 教科教育コース理科選修
  • 教育学研究科(専門職学位課程)教育実践高度化専攻 教科領域コース
  • 教育学野 言語社会・自然科学領域

研究分野

  • 自然科学一般, 数理物理、物性基礎, 量子基礎論
  • 自然科学一般, 素粒子、原子核、宇宙線、宇宙物理にする理論, 素粒子・原子核・宇宙線・宇宙物理
  • 自然科学一般, 応用数学、統計数学
  • 情報通信, 数理情報学
  • 人文・社会, 科学教育, 物理教育 量子教育

研究キーワード

  • 数理物理 物性基礎 量子基礎論
  • 素粒子論 量子論 相対論 宇宙論
  • 応用数学 非可換幾何 関数解析
  • 数理情報学
  • 科学教育

自身の研究に関連するSDGs

学位

  • 2002年03月 博士(学術)(東京大学)

学歴

  • 1999年04月 - 2002年03月, 東京大学, 総合文化研究科, 広域科学専攻 相関基礎科学系 博士課程
  • 1997年04月 - 1999年03月, 東京大学, 総合文化研究科, 広域科学専攻 相関基礎科学系 修士課程
  • 1995年04月 - 1997年03月, 東京大学, 理学部, 物理学科

経歴

  • 2007年04月 - 現在, 茨城大学 教育学部 理科教育教室 准教授
  • 2021年11月 - 2022年12月, コペンハーゲン大学ニールス・ボーア研究所, 素粒子・宇宙理論 部門, 客員研究員
  • 2008年04月 - 2008年09月, コペンハーゲン大学ニールス・ボーア研究所, 素粒子・宇宙理論 部門, 客員研究員
  • 2005年04月 - 2007年03月, 茨城大学 教育学部 理科教育教室, 助教授
  • 2003年01月 - 2005年03月, 高エネルギー加速器研究機構 素粒子原子核研究所, 研究機関研究員
  • 2002年04月 - 2003年01月, 高エネルギー加速器研究機構 素粒子原子核研究所, 協力研究員
  • 1999年04月 - 2001年03月, 東京大学教養学部, ティーチングアシスタント

委員歴

  • 2019年04月 - 2021年03月, 理科専修主任, 茨城大学大学院教育学研究科
  • 2019年04月 - 2021年03月, 理科教育教室主任, 茨城大学教育学部
  • 2019年04月 - 2021年03月, 理科教育推進事業 事業担当責任者(大学側), 茨城大学・茨城県教育委員会
  • 2017年04月 - 2021年03月, ボクシング部 顧問, 茨城大学
  • 2018年04月 - 2020年03月, 臨床心理相談室運営委員会 委員, 茨城大学教育学部
  • 2018年05月, 平成30年度 科学の甲子園ジュニア実行委員, 茨城県教育委員会
  • 2015年04月 - 2018年03月, 宇宙科学教育研究センター運営委員会委員 委員, 茨城大学
  • 2017年05月, 平成29年度 科学の甲子園ジュニア実行委員, 茨城県教育委員会
  • 2011年04月 - 2013年03月, 宇宙科学教育研究センター運営委員会 委員, 茨城大学
  • 2009年04月 - 2013年03月, プロレス研究会 顧問, 茨城大学
  • 2011年04月 - 2012年03月, 教育実践総合センター協力委員会 紀要編集委員会 委員, 茨城大学教育学部
  • 2004年09月 - 2004年09月, 2004年 秋季大会 座長(素粒子論28pSL), 日本物理学会
  • 2003年12月 - 2004年03月, KEK Theory Workshop '04 世話人, 高エネルギー加速器研究機構 素粒子原子核研究所 理論部
  • 2000年03月 - 2000年03月, 2000年 春の分科会 座長(素粒子論31aSD), 日本物理学会
  • 1998年08月 - 1999年07月, '99 原子核三者若手 夏の学校 準備委員, 原子核三者若手

■研究活動情報

論文

  • Could random dynamics derive quantum mechanics via the weak value?
    Holger Bech Nielsen; Keiichi Nagao, ラスト(シニア)オーサー, University of Ljubljana, Faculty of Mathematics and Physics
    Bled Workshops in Physics (Proceedings to the 27th workshop "What Comes Beyond the Standard Models", Bled, Slovenia, Jul.8-17, 2024), 2024年12月, [査読有り]
  • Automatic hermiticity for mixed states
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, We previously proposed a mechanism to effectively obtain, after a long time development, a Hamiltonian being Hermitian with regard to a modified inner product $I_Q$ that makes a given non-normal Hamiltonian normal by using an appropriately chosen Hermitian operator $Q$. ,We studied it for pure states. In this letter we show that a similar mechanism also works for mixed states by introducing density matrices to describe them and investigating their properties explicitly both in the future-not-included and future-included theories. ,In particular, in the latter, where not only a past state at the initial time $T_A$ but also a future state at the final time $T_B$ is given, we study a couple of candidates for it, and introduce a ``skew density matrix'' composed of both ensembles of the future and past states such that the trace of the product of it and an operator ${\cal O}$ matches a normalized matrix element of ${\cal O}$. ,We argue that the skew density matrix defined with $I_Q$ at the present time $t$ for large $T_B-t$ and large $t-T_A$ approximately corresponds to another density matrix composed of only an ensemble of past states and defined with ,another inner product $I_{Q_J}$ for large $t-T_A$., Oxford University Press (The Physical Society of Japan)
    Progress of Theoretical and Experimental Physics, 2023年02月16日, [査読有り]
  • What gives a “theory of Initial Conditions” ?
    Holger Bech Nielsen; Keiichi Nagao, ラスト(シニア)オーサー, The present work contains a review of some of the work we have done on ,complex action or non-Hermitian Hamiltonian theory, especially the result that the anti-Hermitian part of the Hamiltonian functions by determining the actual solution to the equations of motion, that should be realized; this means it predicts the initial conditions. It should be stressed that a major result of ours is that the effective equations of motion will in practice - after long time - be so accurately as if we had indeed a Hermitian Hamiltonian,,and so there is at first nothing wrong in assuming a non-Hermitian one. In fact it would practically seem Hermitian anyway. A major new point is that we seek by a bit intuitively arguing to suggest some cosmologically predictions from the mentioned initial conditions predicted: We seek even by assuming essentially nothing but very general properties of the non-Hermitian Hamiltonian that we in practice should find a bottom in the (effective Hermitian) Hamiltonian and that the Universe at some moment should pass through a (multiple) saddle point very closely, so that the time spent at it would be very long., DMFA
    Bled Workshops in Physics ,(Proceedings to the 25th workshop "What Comes Beyond the Standard Models", Bled, Slovenia, Jul.4-10, 2022), 2022年12月, [査読有り]
  • Reality from maximizing overlap in the periodic complex action theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, Abstract

    We study the periodic complex action theory (CAT) by imposing a periodic condition in the future-included CAT where the time integration is performed from the past to the future, and extend a normalized matrix element of an operator $\hat{\mathcal {O } }$, which is called weak value in the real action theory, to another expression $\langle \hat{\mathcal {O } } \rangle _{\mathrm{periodic}~\mathrm{time } }$. We present two theorems stating that $\langle \hat{\mathcal {O } } \rangle _{\mathrm{periodic}~\mathrm{time } }$ becomes real for $\hat{\mathcal {O } }$ being Hermitian with regard to a modified inner product that makes a given non-normal Hamiltonian $\hat{H}$ normal. The first theorem holds for a given period tp in a case where the number of eigenstates having the maximal imaginary part B of the eigenvalues of $\hat{H}$ is just one, while the second one stands for tp’s selected such that the absolute value of the transition amplitude is maximized in a case where B ≤ 0 and |B| is much smaller than the distances between any two real parts of the eigenvalues of $\hat{H}$. The latter proven via a number-theoretical argument suggests that, if our universe is periodic, then even the period could be an adjustment parameter to be determined in the Feynman path integral. This is a variant type of the maximization principle that we previously proposed., Oxford University Press (OUP)
    Progress of Theoretical and Experimental Physics, 2022年07月23日, [査読有り]
  • Formalism of a harmonic oscillator in the future-included complex action theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, In a special representation of complex action theory that we call ``future-included'',
    we study a harmonic oscillator model defined with a non-normal Hamiltonian $\hat{H}$, in which a mass $m$ and an angular frequency $\omega$ are taken to be complex numbers. In order for the model to be sensible some restrictions on $m$ and $\omega$ are required. We draw a phase diagram in the plane of the arguments of $m$ and $\omega$, according to which the model is classified into several types.
    In addition, we formulate two pairs of annihilation and creation operators, two series of eigenstates of the Hamiltonians $\hat{H}$ and $\hat{H}^\dag$, and coherent states. They are normalized in a modified inner product $I_Q$, with respect to which
    the Hamiltonian $\hat{H}$ becomes normal. Furthermore, applying to the model the maximization principle that we previously proposed, we obtain an effective theory described by a Hamiltonian that is $Q$-Hermitian, i.e. Hermitian with respect to the modified inner product $I_Q$. The generic solution to the model is found to be the ``ground'' state. Finally we discuss what the solution implies., Oxford University Press
    Progress of Theoretical and Experimental Physics, 2019年07月16日, [査読有り]
  • Erratum: ``Theory including future not excluded: Formulation of complex action theory II"
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, Oxford University Press (The Physical Society of Japan)
    Progress of Theoretical and Experimental Physics, 2018年03月27日, [査読有り]
  • Erratum: ``Momentum relation and classical limit in the future-not-included complex action theory"
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, Oxford University Press (The Physical Society of Japan)
    Progress of Theoretical and Experimental Physics, 2018年02月15日, [査読有り]
  • Reality from maximizing overlap in the future-included theories
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, In the future-included complex and real action
    theories whose paths run over not only the past but also the future,
    we briefly review the theorem on the normalized matrix element of an operator $\hat{\cal O}$,
    which is defined in terms of the future and past states
    with a proper inner product $I_Q$ that makes a given Hamiltonian normal.
    The theorem states that,
    provided that the operator $\hat{\cal O}$ is $Q$-Hermitian, i.e.
    Hermitian with regard to the proper inner product $I_Q$,
    the normalized matrix element
    becomes real and time-develops under
    a $Q$-Hermitian Hamiltonian
    for the past and future states selected such that
    the absolute value of the transition amplitude from
    the past state to the future state is maximized.
    Discussing what the theorem implicates, we speculate that
    the future-included complex action theory
    would be the most elegant quantum theory., DMFA
    Bled Workshops in Physics (Proceedings to the 20th workshop "What Comes Beyond the Standard Models", Bled, Slovenia, Jul.9-17, 2017), 2017年12月12日, [査読有り]
  • Momentum and Hamiltonian in complex action theory (vol 27, 1250076, 2012)
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, WORLD SCIENTIFIC PUBL CO PTE LTD
    INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 2017年11月, [査読有り]
  • Complex action suggests future-included theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, In quantum theory its action is usually taken to be real, but we can consider another theory whose action is complex. In addition, in the Feynman path integral, the time integration is usually performed over the period between the initial time T-A and some specific time, say, the present time t. Besides such a future-not-included theory, we can consider the future-included theory, in which not only the past state broken vertical bar A(T-A)) at the initial time T-A but also the future state broken vertical bar B(T-B)> at the final time T-B is given at first, and the time integration is performed over the whole period from the past to the future. Thus quantum theory can be classified into four types, according to whether its action is real or not, and whether the future is included or not. We argue that, if a theory is described with a complex action, then such a theory is suggested to be the future-included theory, rather than the future-not-included theory. Otherwise persons living at different times would see different histories of the universe., OXFORD UNIV PRESS INC
    PROGRESS OF THEORETICAL AND EXPERIMENTAL PHYSICS, 2017年11月, [査読有り]
  • Reality from maximizing overlap in the future-included real action theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, In the future-included real action theory whose path runs over not only past but also future, we demonstrate a theorem, which states that the normalized matrix element of a Hermitian operator (O) over cap defined in terms of the future state at the final time T-B and the fixed past state at the initial time T-A becomes real for the future state selected such that the absolute value of the transition amplitude from the past state to the future state is maximized. This is a special version of our previously proposed theorem for the future-included complex action theory. We find that though the maximization principle leads to the reality of the normalized matrix element in the future-included real action theory, it does not specify the future and past states so much as in the case of the future-included complex action theory. In addition, we argue that the normalized matrix element seems to be more natural than the usual expectation value. Thus we speculate that the functional integral formalism of quantum theory could be most elegant in the future-included complex action theory., OXFORD UNIV PRESS INC
    PROGRESS OF THEORETICAL AND EXPERIMENTAL PHYSICS, 2017年08月, [査読有り]
  • Reality and hermiticity from maximizing overlap in the future-included complex action theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, In the complex action theory whose path runs over not only past but also future, we study a normalized matrix element of an operator (O) over cap defined in terms of the future state at the latest time T-B and the past state at the earliest time T-A with a proper inner product that makes normal a given Hamiltonian that is non-normal at first. We present a theorem that states that, provided that the operator (O) over cap is Q-Hermitian, i.e., Hermitian with regard to the proper inner product, the normalized matrix element becomes real and time-develops under a Q-Hermitian Hamiltonian for the past and future states selected such that the absolute value of the transition amplitude from the past state to the future state is maximized. Furthermore, we give a possible procedure to formulate the Q-Hermitian Hamiltonian in terms of Q-Hermitian coordinate and momentum operators, and construct a conserved probability current density., OXFORD UNIV PRESS INC
    PROGRESS OF THEORETICAL AND EXPERIMENTAL PHYSICS, 2015年05月, [査読有り]
  • Momentum relation and classical limit in the future-not-included complex action theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, Studying the time development of the expectation value in the future-not-included complex action theory, we point out that the momentum relation (the relation analogous to p = partial derivative L/partial derivative q), which was derived via the Feynman path integral and was shown to be correct in the future-included theory in our previous papers, is not valid in the future-not-included theory. We provide the correct momentum relation in the future-not-included theory, and argue that the future-not-included classical theory is described by a certain real action. In addition, we provide anotherway to understand the time development of the future-not-included theory by utilizing the future-included theory. Furthermore, properly applying the method used in our previous paper to the future-not-included theory by introducing a formal Lagrangian, we derive the correct momentum relation in the future-not-included theory., OXFORD UNIV PRESS INC
    PROGRESS OF THEORETICAL AND EXPERIMENTAL PHYSICS, 2013年07月, [査読有り]
  • Theory including future not excluded: Formulation of complex action theory II
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, We study a complex action theory (CAT) whose path runs over not only past but also future. We show that, if we regard a matrix element defined in terms of the future state at time TB and the past state at time TA as an expectation value in the CAT, then we are allowed to have the Heisenberg equation, Ehrenfest's theorem, and the conserved probability current density. In addition,we showthat the expectation value at the present time t of a future-included theory for large TB - t and large t - TA corresponds to that of a future-not-included theory with a proper inner product for large t - TA. Hence, the CAT with future explicitly present in the formalism and influencing in principle the past is not excluded phenomenologically, because the effects are argued to be very small in the present era. Furthermore, we explicitly derive the Hamiltonian for the future state via a path integral, and confirm that it is given by the Hermitian conjugate of the Hamiltonian for the past state. © The Author(s) 2013., Oxford University Press
    Progress of Theoretical and Experimental Physics, 2013年, [査読有り]
  • Correspondence between future-included and future-not-included theories
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, We briefly review the correspondence principle proposed in our previous paper, which claims that if we regard a matrix element defined in terms of the future state at time $T_B$ and the past state at time $T_A$ as an expectation value in the complex action theory whose path runs over not only past but also future, the expectation value at the present time $t$ of a future-included theory for large $T_B-t$ and large $t-T_A$ corresponds to that of a future-not-included theory with a proper inner product for large $t-T_A$. This correspondence principle suggests that the future-included theory is not excluded phenomenologically.
    Proceedings to the 15th workshop ``What Comes Beyond the Standard Models", Bled, Slovenia, Jul.9-19, 2012, 2012年12月, [査読有り]
  • Momentum and Hamiltonian in Complex Action Theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, In the complex action theory (CAT) we explicitly examine how the momentum and Hamiltonian are defined from the Feynman path integral (FPI) point of view based on the complex coordinate formalism of our foregoing paper. After reviewing the formalism briefly, we describe in FPI with a Lagrangian the time development of a xi-parametrized wave function, which is a solution to an eigenvalue problem of a momentum operator. Solving this eigenvalue problem, we derive the momentum and Hamiltonian. Oppositely, starting from the Hamiltonian we derive the Lagrangian in FPI, and we are led to the momentum relation again via the saddle point for p. This study confirms that the momentum and Hamiltonian in the CAT have the same forms as those in the real action theory. We also show the third derivation of the momentum relation via the saddle point for q., WORLD SCIENTIFIC PUBL CO PTE LTD
    International Journal of Modern Physics A, 2012年06月, [査読有り]
  • Formulation of Complex Action Theory (vol 126, pg 1021, 2011)
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, PROGRESS THEORETICAL PHYSICS PUBLICATION OFFICE
    PROGRESS OF THEORETICAL PHYSICS, 2012年06月, [査読有り]
  • Formulation of Complex Action Theory
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, We formulate a complex action theory which includes operators of coordinate and momentum (q) over cap and (p) over cap being replaced with non-hermitian operators (q) over cap (new) and (p) over cap (new) and their eigenstates vertical bar q >(new) and vertical bar p >(new) with complex eigenvalues q and p. Introducing a philosophy of keeping the analyticity in path integration variables, we define a modified set of complex conjugate, real and imaginary parts, hermitian conjugates and bras, and explicitly construct (q) over cap (new), (p) over cap (new), vertical bar q >(new) and vertical bar p >(new) by formally squeezing coherent states. We also pose a theorem on the relation between functions on the phase space and the corresponding operators. Only in our formalism can we describe a complex action theory or a real action theory with complex saddle points in the tunneling effect etc. in terms of bras and kets in the functional integral. Furthermore, in a system with a non-hermitian diagonalizable bounded Hamiltonian, we show that the mechanism to obtain a hermitian Hamiltonian after a long time development proposed in our paper [Prog. Theor. Phys. 125 (2011), 633] works also in the complex coordinate formalism. If the hermitian Hamiltonian is given in a local form, a, conserved probability current density can be constructed with two kinds of wave functions., PROGRESS THEORETICAL PHYSICS PUBLICATION OFFICE
    PROGRESS OF THEORETICAL PHYSICS, 2011年12月, [査読有り]
  • Automatic Hermiticity
    Keiichi Nagao; Holger Bech Nielsen, 筆頭著者, We study a diagonalizable Hamiltonian that is not at first hermitian. Requirement that a measurement shall not change one Hamiltonian eigenstate into another one with a different eigenvalue imposes that an inner product must be defined so as to make the Hamiltonian normal with regard to it. After a long time development with the non-hermitian Hamiltonian, only a subspace of possible states will effectively survive. On this subspace the effect of the anti-hermitian part of the Hamiltonian is suppressed, and the Hamiltonian becomes hermitian. Thus hermiticity emerges automatically, and we have no reason to maintain that at the fundamental level the Hamiltonian should be hermitian. If the Hamiltonian is given in a local form, a conserved probability current density can be constructed with two kinds of wave functions. We also point out a possible misestimation of a past state by extrapolating back in time with the hermitian Hamiltonian. It is a seeming past state, not a true one., PROGRESS THEORETICAL PHYSICS PUBLICATION OFFICE
    PROGRESS OF THEORETICAL PHYSICS, 2011年03月, [査読有り]
  • Complex Action Functioning as Cutoff and De Broglie-Bohm Particle
    H.B.Nielsen; N.S.Mankoc Borstnik; K.Nagao; G.Moultaka, The purpose of this discussion contribution is to suggest the possibility that the imaginary action model could function as a cut off in loop diagrams. We argue also that the complex action model of M.Ninomiya and H.B.Nielsen has the De Broglie-Bohm particle appearing by itself, which is in a way already present in the contribution to this conference.
    Proceedings to the 13th Workshop 'What Comes Beyond the Standard Models' Bled, July 12 - 22, 2010, 2010年12月, [査読有り], [招待有り]
  • Erratum to: “Vortex fermion on the lattice” [Nucl. Phys. B 636 (2002) 264–290]
    Keiichi Nagao
    Nuclear Physics B, 2008年04月03日, [査読有り]
  • Ginsparg-Wilson relation and admissibility condition in noncommutative geometry
    Keiichi Nagao, 筆頭著者, Ginsparg-Wilson relation and admissibility condition have the key role to construct lattice chiral gauge theories. They are also useful to define the chiral structure in finite noncommutative geometries or matrix models. We discuss their usefulness briefly., PROGRESS THEORETICAL PHYSICS PUBLICATION OFFICE
    PROGRESS OF THEORETICAL PHYSICS SUPPLEMENT, 2007年, [査読有り]
  • Dynamical aspects of the fuzzy CP2 in the large N reduced model with a cubic term
    Takehiro Azuma; Subrata Bal; Keiichi Nagao; Jun Nishimura, "Fuzzy CP2", which is a four-dimensional fuzzy manifold analogous to the fuzzy 2-sphere (S-2), appears as a classical solution in the dimensionally reduced 8d Yang-Mills model with a cubic term involving the structure constant of the SU(3) Lie algebra. Although the fuzzy S-2, which is also a classical solution of the same model, has actually smaller free energy than the fuzzy CP2, Monte Carlo simulation shows that the fuzzy CP2 is stable even nonperturbatively due to the suppression of tunneling erects at large N as far as the coefficient of the cubic term (alpha) is sufficiently large. As alpha is decreased, both the fuzzy CP2 and the fuzzy S2 collapse to a solid ball and the system is essentially described by the pure Yang-Mills model (alpha = 0). The corresponding transitions are of first order. The gauge group generated dynamically above the critical point turns out to be of rank one for both CP2 and S2 cases. Above the critical point, we also perform perturbative calculations for various quantities to all orders, taking advantage of the one-loop saturation of the effective action in the large-N limit. By extrapolating our Monte Carlo results to N = infinity, we find excellent agreement with the all order results., SPRINGER
    JOURNAL OF HIGH ENERGY PHYSICS, 2006年05月, [査読有り]
  • Admissibility condition and nontrivial indices on a noncommutative torus
    Keiichi Nagao, We study the index of the Ginsparg-Wilson Dirac operator on a noncommutative torus numerically. To do this, we first formulate an admissibility condition which suppresses the fluctuation of gauge fields. Assuming this condition, we generate gauge configurations randomly, and find various configurations with nontrivial indices. We show one example of configurations with index 1 explicitly. This result provides the first evidence that nontrivial indices can be naturally defined on the noncommutative torus by utilizing the Ginsparg-Wilson relation and the admissibility condition., AMER PHYSICAL SOC
    PHYSICAL REVIEW D, 2006年03月, [査読有り]
  • Topological aspects of gauge theory on noncommutative geometry               
    Hajime Aoki; J. Nishimura; Y. Susaki; S. Iso; T. Maeda; K. Nagao, American Physical Society
    Annual Meeting of the Division of Particles and Fields of the American Physical Society, DPF 2006, and the Annual Fall Meeting of the Japan Particle Physics Community, 2006年
  • Perturbative versus nonperturbative dynamics of the fuzzy S^2×S^2
    Takehiro Azuma; Subrata Bal; Keiichi Nagao; Jun Nishimura, We study a matrix model with a cubic term, which incorporates both the fuzzy S-2 x S-2 and the fuzzy S-2 as classical solutions. Both of the solutions decay into the vacuum of the pure Yang- Mills model (even in the large-N limit) when the coefficient of the cubic term is smaller than a critical value, but the large-N behavior of the critical point is different for the two solutions. The results above the critical point are nicely reproduced by the all order calculations in perturbation theory. By comparing the free energy, we find that the true vacuum is given either by the fuzzy S-2 or by the "pure Yang-Mills vacuum" depending on the coupling constant. In Monte Carlo simulation we do observe a decay of the fuzzy S-2 x S-2 into the fuzzy S-2 at moderate N, but the decay probability seems to be suppressed at large N. The above results, together with our previous results for the fuzzy CP2, reveal certain universality in the large-N dynamics of four-dimensional fuzzy manifolds realized in a matrix model with a cubic term., SPRINGER
    The Journal of High Energy Physics, 2005年09月, [査読有り]
  • Impact of supersymmetry on the nonperturbative dynamics of fuzzy spheres
    KN Anagnostopoulos; T Azuma; K Nagao; J Nishimura, We study a 4d supersymmetric matrix model with a cubic term, which incorporates fuzzy spheres as classical solutions, using Monte Carlo simulations and perturbative calculations. The fuzzy sphere in the supersymmetric model turns out to be always stable if the large-N limit is taken in such a way that various correlation functions scale. This is in striking contrast to analogous bosonic models, where the fuzzy sphere decays into the pure Yang-Mills vacuum due to quantum effects when the coeffcient of the cubic term becomes smaller than a critical value. We also find that the power-law tail of the eigenvalue distribution, which exists in the supersymmetric model without the cubic term, disappears in the presence of the fuzzy sphere in the large-N limit. Coincident fuzzy spheres turn out to be unstable, which implies that the dynamically generated gauge group is U(1)., SPRINGER
    JOURNAL OF HIGH ENERGY PHYSICS, 2005年09月, [査読有り]
  • Perturbative dynamics of fuzzy spheres at large N
    T Azuma; K Nagao; J Nishimura, We clarify some peculiar aspects of the perturbative expansion around a classical fuzzy-sphere solution in matrix models with a cubic term. While the effective action in the large-N limit is saturated at the one-loop level, we find that the "one- loop dominance" does not hold for generic observables due to one-particle reducible diagrams. However, we may exploit the one-loop dominance for the effective action and obtain various observables to all orders from one-loop calculation by simply shifting the center of expansion to the "quantum solution", which extremizes the effective action. We confirm the validity of this method by comparison with the direct two-loop calculation and with Monte Carlo results in the 3d Yang-Mills-Chern-Simons matrix model. From the all order result we find that the perturbative expansion has a finite radius of convergence., SPRINGER
    JOURNAL OF HIGH ENERGY PHYSICS, 2005年06月, [査読有り]
  • Dynamical generation of a nontrivial index on the fuzzy 2-sphere
    H Aoki; S Iso; T Maeda; K Nagao, ラスト(シニア)オーサー, In the previous paper [H. Aoki, S. Iso, and K. Nagao, Nucl. Phys. B 684, 162 (2004)] we studied the 't Hooft-Polyakov (TP) monopole configuration in the U(2) gauge theory on the fuzzy 2-sphere and showed that it has a nonzero topological charge in the formalism based on the Ginsparg-Wilson relation. In this paper, by showing that the TP monopole configuration is stabler than the U(2) gauge theory without any condensation in the Yang-Mills-Chern-Simons matrix model, we will present a mechanism for dynamical generation of a nontrivial index. We further analyze the instability and decay processes of the U(2) gauge theory and the TP monopole configuration., AMERICAN PHYSICAL SOC
    PHYSICAL REVIEW D, 2005年02月, [査読有り]
  • Absence of a fuzzy S-4 phase in the dimensionally reduced 5d Yang-Mills-Chern-Simons model
    T Azuma; K Nagao; J Nishimura; S Bal, We perform nonperturbative studies of the dimensionally reduced 5d Yang-Mills-Chern-Simons model, in which a four-dimensional fuzzy manifold, "fuzzy S-4", is known to exist as a classical solution. Although the action is unbounded from below, a well-defined vacuum, which stabilizes at large N, exists when the coefficient of the Chern-Simons term is sufficiently small. However, this vacuum corresponds to the "Yang-Mills phase", in which the system behaves similarly to the pure Yang-Mills model. In Monte Carlo simulations we find that the fuzzy S-4 prepared as an initial configuration either diverges or falls into the Yang-Mills phase. Thus the model does not have a 'fuzzy S-4 phase" in contrast to our previous results on the dimensionally reduced 3d Yang-Mills-Chern-Simons model, in which the 'fuzzy S-2', can be realized dynamically., SPRINGER
    JOURNAL OF HIGH ENERGY PHYSICS, 2004年07月, [査読有り]
  • Nonperturbative studies of fuzzy spheres in a matrix model with the Chern-Simons term
    T Azuma; S Bal; K Nagao; J Nishimura, Fuzzy spheres appear as classical solutions in a matrix model obtained via dimensional reduction of 3-dimensional Yang-Mills theory with the Chern-Simons term. Well-defined perturbative expansion around these solutions can be formulated even for finite matrix size, and in the case of k coincident fuzzy spheres it gives rise to a regularized U(k) gauge theory on a noncommutative geometry. Here we study the matrix model nonperturbatively by Monte Carlo simulation. The system undergoes a first order phase transition as we change the coefficient (alpha) of the Chern-Simons term. In the small alpha phase, the large-N properties of the system are qualitatively the same as in the pure Yang-Mills model (alpha=0), whereas in the large alpha phase a single fuzzy sphere emerges dynamically. Various 'multi fuzzy spheres' are observed as meta-stable states, and we argue in particular that the k coincident fuzzy spheres cannot be realized as the true vacuum in this model even in the large-N limit. We also perform one-loop calculations of various observables for arbitrary k including k=1. Comparison with our Monte Carlo data suggests that higher order corrections are suppressed in the large-N limit., SPRINGER
    JOURNAL OF HIGH ENERGY PHYSICS, 2004年05月, [査読有り]
  • Ginsparg-Wilson relation and 't Hooft-Polyakov monopole on fuzzy 2-sphere
    H Aoki; S Iso; K Nagao, ラスト(シニア)オーサー, We investigate several properties of Ginsparg-Wilson fermion on fuzzy 2-sphere. We first examine chiral anomaly up to the second order of the gauge field and show that it is indeed reduced to the correct form of the Chern character in the commutative limit. Next we study topologically nontrivial gauge configurations and their topological charges. We investigate 't Hooft-Polyakov monopole type configuration on fuzzy 2-sphere and show that it has the correct commutative limit. We also consider more general configurations in our formulation. (C) 2004 Elsevier B.V. All rights reserved., ELSEVIER SCIENCE BV
    NUCLEAR PHYSICS B, 2004年04月, [査読有り]
  • Matrix model and Ginsparg-Wilson relation
    K Nagao, We discuss that the Ginsparg-Wilson relation, which has the key role in the recent development of constructing lattice chiral gauge theory, can play an important role to define chiral structures in finite matrix models and noncommutative geometries., ELSEVIER SCIENCE BV
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2004年03月, [査読有り]
  • Chiral anomaly and Ginsparg-Wilson relation on the noncommutative torus
    S Iso; K Nagao, ラスト(シニア)オーサー, We evaluate chiral anomaly on the noncommutative torus with the overlap Dirac operator satisfying the Ginsparg-Wilson relation in arbitrary even dimensions. Utilizing a topological argument, we show that the chiral anomaly is combined into a form of the Chern character with star products., PROGRESS THEORETICAL PHYSICS PUBLICATION OFFICE
    PROGRESS OF THEORETICAL PHYSICS, 2003年06月, [査読有り]
  • Ginsparg-Wilson relation, topological invariants, and finite noncommutative geometry
    Hajime Aoki; Satoshi Iso; Keiichi Nagao, ラスト(シニア)オーサー, We show that the Ginsparg-Wilson (GW) relation can play an important role in defining chiral structures in finite noncommutative geometries. Employing the GW relation, we can prove the index theorem and construct topological invariants even if the system has only finite degrees of freedom. As an example, we consider a gauge theory on a fuzzy two-sphere and give an explicit construction of a noncommutative analogue of the GW relation, chirality operator, and the index theorem. The topological invariant is shown to coincide with the first Chern class in the commutative limit., AMER PHYSICAL SOC
    PHYSICAL REVIEW D, 2003年04月, [査読有り]
  • Chiral anomaly on a fuzzy 2-sphere
    H Aoki; S Iso; K Nagao, ラスト(シニア)オーサー, We investigate the chiral anomaly for fermions in the fundamental representation on a noncommutative (fuzzy) 2-sphere. In spite of the fact that this system is realized by finite dimensional matrices and no regularization is necessary for either UV or IR, we can reproduce the correct chiral anomaly which is consistent with the calculations done in flat noncommutative space. As in the flat case, there are ambiguities in defining the chiral currents. We define the chiral currents in a gauge-invariant way and a gauge-covariant way, and show that the corresponding anomalous chiral Ward-Takahashi identities take different forms. The Ward-Takahashi identity for the gauge-invariant current contains explicit nonlocality while that for the covariant one is given by a local expression., AMER PHYSICAL SOC
    PHYSICAL REVIEW D, 2003年03月, [査読有り]
  • Axial anomaly with the overlap-Dirac operator in arbitrary dimensions
    T Fujiwara; K Nagao; H Suzuki, We evaluate for arbitrary even dimensions the classical continuum limit of the lattice axial anomaly defined by the overlap-Dirac operator. Our calculational scheme is simple and systematic. In particular, a powerful topological argument is utilized to determine the value of a lattice integral involved in the calculation. When the Dirac operator is free of species doubling, the classical continuum limit of the axial anomaly in various dimensions is combined into a form of the Chern character, as expected., SPRINGER
    JOURNAL OF HIGH ENERGY PHYSICS, 2002年09月, [査読有り]
  • Vortex fermion on the lattice
    Keiichi Nagao, The domain wall fermion formalism in lattice gauge theory is much investigated recently. This is set up by reducing (4 + 1)-dimensional theory to low energy effective 4-dimensional one. In order to look a-round other possibilities of realizing chiral fermion on the lattice, we construct vortex fermion by reducing (4 + 2)-dimensional theory to low energy effective 4-dimensional one on the lattice. In extra 2 dimensions we propose a new lattice regularization which has a discrete rotational invariance but not a translational one. In order to eliminate doubling species in the naive construction we introduce the extended Wilson term which is appropriate to our model. We propose two models for convenience and show that a normalizable zero mode solution appears at the core of the vortex. (C) 2002 Elsevier Science B.V. All rights reserved., ELSEVIER SCIENCE BV
    NUCLEAR PHYSICS B, 2002年08月, [査読有り]
  • Lattice QCD with the overlap fermions at strong gauge coupling (II)
    Ikuo Ichinose; Keiichi Nagao, ラスト(シニア)オーサー, In the previous paper we developed a strong-coupling expansion for the lattice QCD with the overlap fermions and showed that Luscher's "extended" chiral symmetry is spontaneously broken in some parameter region of the overlap fermions. In this paper, we derive a low-energy effective action of hadrons and show that there exist quasi-Nambu-Goldstone bosons which are identified as the pions. The pion field is a nonlocal composite field of quark and anti-quark even at the strong-coupling limit because of the nonlocality of the overlap fermion formalism and Luscher's chiral symmetry, The pions become massless in the limit of the vanishing bare-quark mass as it is desired. We furthermore examine symmetries of the overlap fermions with the hopping expansion and argue that there appear no other massless modes other than the pions. (C) 2001 Elsevier Science B.V. All rights reserved., ELSEVIER SCIENCE BV
    NUCLEAR PHYSICS B, 2001年02月, [査読有り]
  • Lattice QCD with the overlap fermions at strong gauge coupling
    Ikuo Ichinose; Keiichi Nagao, ラスト(シニア)オーサー, We generalize overlap fermion by Narayanan and Neuberger by introducing a hopping parameter t. This lattice fermion has desirable properties as the original overlap fermion. We expand "Dirac" operator of this fermion in powers of t. Higher-order terms of t are long-distance terms and this t-expansion is a kind of the hopping expansion. It is shown that the Ginsparg-Wilson relation is satisfied at each order of t. We show that this t-expansion is useful for study of the strong-coupling gauge theory. We apply this formalism to the lattice QCD and study its chiral phase structure at strong coupling. We find that there are (at least) two phases one of which has desired chiral properties of QCD. Possible phase structure of the lattice QCD with the overlap fermions is proposed. (C) 2000 Elsevier Science B.V. All rights reserved., ELSEVIER SCIENCE BV
    NUCLEAR PHYSICS B, 2000年06月, [査読有り]
  • Gauged Gross-Neveu model with overlap fermions
    Ikuo Ichinose; Keiichi Nagao, ラスト(シニア)オーサー, We investigate chiral properties of the overlap lattice fermion by using solvable model in two dimensions, the gauged Gross-Neveu model. In this model, the chiral symmetry is spontaneously broken in the presence of small but finite fermion mass. We calculate the quasi-Nambu-Goldstone(NG) boson mass as a function of the bare fermion mass and two parameters in the overlap formula. We find that the quasi-NC boson mass has desired properties as a result of the extended chiral symmetry found by Luscher. We also show the PCAC relation is satisfied in desired form. Comparison between the overlap and Wilson lattice fermions is also made., PHYSICAL SOC REPUBLIC CHINA
    CHINESE JOURNAL OF PHYSICS, 2000年06月, [査読有り]
  • Gross-Neveu model with overlap fermions
    Ikuo Ichinose; Keiichi Nagao, ラスト(シニア)オーサー, We investigate the chiral properties of overlap lattice fermion by using two-dimensional Gross-Neveu model coupled with a gauge field. Chiral properties of this model are similar to those of QCD(4), i.e. the chiral symmetry is spontaneously broken in the presence of small but finite fermion mass and also there appears the chiral anomaly because of the coupling with the gauge field. To take into consideration Luscher's extended chiral symmetry, we insert overlap Dirac operator even in the interaction terms so that the whole action including them are invariant under the extended chiral transformation at finite lattice spacing though the interaction terms become nonlocal. We calculate mass of the quasi-Namb-Goldstone boson as a function of the bare fermion mass and two parameters in the overlap formalism and find that the quasi-Nambu-Goldstone boson has desired properties as a result of the extended chiral symmetry. Furthermore we examine the PCAC relation and find that it is satisfied at finite lattice spacing. Relationship between the anomaly term in the PCAC relation and the U(1) problem is also discussed., WORLD SCIENTIFIC PUBL CO PTE LTD
    MODERN PHYSICS LETTERS A, 2000年04月, [査読有り]
  • Pion mass and the PCAC relation in the overlap fermion formalism: Gauged Gross-Neveu model on a lattice
    Ikuo Ichinose; Keiichi Nagao, ラスト(シニア)オーサー, We investigate chiral properties of the overlap lattice fermion by using solvable model in two dimensions, the gauged Gross-Neveu model. Ln this model, the chiral symmetry is spontaneously broken in the presence of small but finite fermion mass. We calculate the quasi-Nambu-Goldstone (NG) boson mass as a function of the bare fermion mass a-nd two parameters in the overlap formula. We find that the quasi-NC boson mass has desired properties as a result of the extended chiral symmetry found by Luscher. We also examine the PCAC relation and find that it is satisfied in the continuum limit. Comparison between the overlap and Wilson lattice fermions is made. (C) 1999 Published by Elsevier Science B.V. All rights reserved., ELSEVIER SCIENCE BV
    PHYSICS LETTERS B, 1999年08月, [査読有り]

MISC

書籍等出版物

講演・口頭発表等

  • Complex action suggests future-included theory               
    永尾 敬一、Holger Bech Nielsen
    日本物理学会2024年春季大会, 2024年03月19日, 日本物理学会
    20240318, 20240321
  • Reality from maximizing overlap in the periodic complex action theory               
    永尾 敬一、Holger Bech Nielsen
    日本物理学会2024年春季大会, 2024年03月19日, 日本物理学会
    20240318, 20240321
  • Automatic hermiticity for mixed states               
    永尾 敬一、Holger Bech Nielsen
    日本物理学会2024年春季大会, 2024年03月19日, 日本物理学会
    20240318, 20240321
  • Automatic hermiticity for mixed states
    Keiichi Nagao
    KEK Theory Workshop 2023, 2023年11月30日, KEK (High Energy Accelerator Research Organization) Thory Center
    20231129, 20231201
  • Reality from maximizing overlap in the periodic complex action theory
    Keiichi Nagao
    KEK Theory Workshop 2022, 2022年12月08日, KEK (High Energy Accelerator Research Organization) Thory Center
    20221207, 20221209
  • Reality from maximizing overlap in the periodic complex action theory
    Keiichi Nagao
    Joint Theory Seminar @NBI, 2022年10月13日, Theoretical particle physics and cosmology group, Niels Bohr Institute, [招待有り]
    20221013, 20221013
  • Formalism of harmonic oscillator in the future-included complex action theory
    永尾 敬一
    Theoretical High Energy Seminar @NBI, 2019年02月12日, Theoretical particle physics and cosmology group, Niels Bohr Institute, [招待有り]
    20190212, 20190212
  • Reality from maximizing overlap in the future-included real action theory               
    永尾 敬一、Holger Bech Nielsen
    日本物理学会2017年秋季大会, 2017年09月12日, 日本物理学会
  • Reality from maximizing overlap in the future-included real action theory               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2017年06月12日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Reality and hermiticity from maximizing overlap in the future-included complex action theory
    永尾 敬一
    Theoretical High Energy Seminar @NBI, 2017年02月09日, Theoretical particle physics and cosmology group, Niels Bohr Institute, [招待有り]
    20170209, 20170209
  • Reality and hermiticity from maximizing overlap in the future-included complex action theory               
    永尾 敬一、Holger Bech Nielsen
    日本物理学会2015年秋季大会, 2015年09月16日, 日本物理学会
  • Expression of the Q operator for the proper inner product in complex harmonic oscillator               
    永尾 敬一、Holger Bech Nielsen
    日本物理学会2015年秋季大会, 2015年09月16日, 日本物理学会
  • Reality and hermiticity from maximizing overlap in the future-included complex action theory               
    永尾 敬一
    日本大学理工学部素粒子論研究室セミナー, 2015年06月24日, 日本大学理工学部素粒子論研究室, [招待有り]
  • Reality and hermiticity from maximizing overlap in the future-included complex action theory               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2015年05月18日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Momentum relation and classical limit in the future-not-included complex action theory               
    永尾 敬一、Holger Bech Nielsen
    日本物理学会2015年年次大会, 2015年03月22日, 日本物理学会
  • Momentum relation and classical limit in the future-not-included complex action theory               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2014年05月19日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Momentum relation and classical limit in the future-not-included complex action theory               
    永尾 敬一
    QMKEK2014 量子論の諸問題と今後の発展, 2014年03月11日, 高エネルギー加速器研究機構(KEK)
  • Momentum relation and classical limit in the future-not- included complex action theory               
    永尾 敬一
    中部夏の学校2013, 2013年09月01日
  • Momentum relation and classical limit in the future-not-included complex action theory               
    永尾 敬一
    基研研究会 素粒子物理学の進展2013, 2013年08月07日
  • Theory Including Future Not Excluded               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2013年04月22日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Theory Including Future Not Excluded               
    Keiichi Nagao
    KEK理論研究会2013, 2013年03月19日, 高エネルギー加速器研究機構(KEK)
  • Theory Including Future Not Excluded               
    永尾 敬一
    京都大学理学部 素粒子論研究室セミナー, 2013年02月27日, 京都大学理学部 素粒子論研究室, [招待有り]
  • Theory Including Future Not Excluded               
    Keiichi Nagao; Holger Bech Nielsen
    日本物理学会2012年秋季大会, 2012年09月11日, 日本物理学会
  • Formulation of complex action theory               
    Keiichi Nagao
    Seminar @RBI, 2012年07月20日, [招待有り]
    20120720, 20120720
  • Formulation of complex action theory               
    Keiichi Nagao
    Bled 2012: What comes Beyond the Standard Models, 2012年07月10日, [招待有り]
  • Momentum and Hamiltonian in Complex Action Theory               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2012年06月18日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Formulation of Complex Action Theory               
    Keiichi Nagao
    東北大学理学部素粒子論研究室セミナー, 2012年05月10日, 東北大学理学部素粒子論研究室, [招待有り]
  • Formulation of Complex Action Theory               
    Keiichi Nagao
    QMKEK2012 量子論の諸問題と今後の発展, 2012年03月17日, 高エネルギー加速器研究機構(KEK)
  • Formulation of Complex Action Theory               
    Keiichi Nagao
    KEK理論研究会2012, 2012年03月06日, 高エネルギー加速器研究機構(KEK)
  • Automatic Hermiticity               
    Keiichi Nagao
    京都大学基礎物理学研究所研究会「物理と情報の階層構造 ―情報を接点とした諸階層の制御と創発―」, 2012年01月07日, 京都大学基礎物理学研究所
  • Formulation of Complex Action Theory               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2011年12月12日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Automatic Hermiticity               
    Keiichi Nagao; Holger Bech Nielsen
    日本物理学会2011年秋季大会, 2011年09月18日, 日本物理学会
  • Formulation of Complex Action Theory               
    Keiichi Nagao; Holger Bech Nielsen
    日本物理学会2011年秋季大会, 2011年09月18日, 日本物理学会
  • Momentum and Hamiltonian in Complex Action Theory               
    Keiichi Nagao; Holger Bech Nielsen
    日本物理学会2011年秋季大会, 2011年09月18日, 日本物理学会
  • Automatic Hermiticity               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2011年05月09日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Automatic Hermiticity               
    Keiichi Nagao
    KEK理論研究会2011, 2011年03月15日, 高エネルギー加速器研究機構(KEK)
  • Automatic Hermiticity               
    Keiichi Nagao
    Theoretical High Energy Seminar @NBI, 2011年02月03日, [招待有り]
  • Ginsparg-Wilson Relation and Admissibility Condition in Noncommutative Geometry               
    永尾 敬一
    Noncommutative Geometry and Quantum Spacetime in Physics 21st Nishinomiya-Yukawa Memorial Symposium on Theoretical Physics, 2006年11月14日, Yukawa Institute for Theoretical Physics and the Grant-in-Aid for the 21st Century COE (Kyoto U.) "Center for Diversity and Universality in Physics"
  • Matrix Model and Ginsparg-Wilson Relation               
    永尾 敬一
    茨城大学理学部素粒子論研究室セミナー, 2005年11月14日, 茨城大学理学部素粒子論研究室, [招待有り]
  • Perturbative versus nonperturbative dynamics of the fuzzy S2×S2               
    永尾 敬一
    基研研究会「弦理論、場の量子論の展望」, 2005年08月21日, 京都大学基礎物理学研究所
  • Nonperturbative Studies of Fuzzy Spheres in Matrix Models               
    永尾 敬一
    基研研究会「格子ゲージ理論の新しい芽と発展」, 2004年12月09日, 京都大学基礎物理学研究所
  • 一般化されたGinsparg-Wilson 関係式と非可換幾何               
    永尾 敬一
    日本物理学会2004年秋季大会, 2004年09月28日, 日本物理学会
    20040927, 20040930
  • S2 × S2 versus S2 : which one is the true vacuum of the 6d Yang-Mills-Chern-Simons Matrix Model?               
    東 武大、Subrata Bal(登壇者)、永尾 敬一、西村 淳
    日本物理学会2004年秋季大会, 2004年09月28日, 日本物理学会
    20040927, 20040930
  • Monte-Carlo studies of the 4d supersymmetric reduced model with the Chern-Simons term               
    Konstantinos N. Anagnostopoulos、東 武大(登壇者)、永尾 敬一、西村 淳
    日本物理学会2004年秋季大会, 2004年09月28日, 日本物理学会
    20040927, 20040930
  • Dynamical aspects of the fuzzy CP2 in the large N reduced model with a cubic term               
    東 武大、Subrata Bal、永尾 敬一(登壇者)、西村 淳、
    日本物理学会2004年秋季大会, 2004年09月28日, 日本物理学会
    20040927, 20040930
  • Dynamical Aspects of Fuzzy Sphers in Matrix Models               
    永尾 敬一
    中部夏の学校, 2004年08月30日
    20040828, 20040831
  • Nonperturbative studies of the 4d supersymmetric reduced model with the Chern-Simons term               
    永尾 敬一
    基研研究会「場の量子論2004」, 2004年07月14日, 京都大学基礎物理学研究所
  • Matrix Model and Ginsparg-Wison Relation               
    永尾 敬一
    Fuzzy Physics 2004, 2004年06月17日, メキシコ国立工科大学高等研究センター, [招待有り]
  • Nonperturbative Dynamics of Fuzzy Spheres in Matrix Models               
    永尾 敬一
    Fuzzy Physics 2004, 2004年06月16日, メキシコ国立工科大学高等研究センター, [招待有り]
  • Nonperturbative studies of higher-dimensional fuzzy-spheres in the matrix model               
    東 武大(登壇者)、Subrata Bal、永尾 敬一、西村 淳
    日本物理学会2004年年次大会, 2004年03月30日, 日本物理学会
    20040327, 20040330
  • Dynamical generation of gauge group in matrix models               
    東 武大、Subrata Bal、永尾 敬一(登壇者)、西村 淳
    日本物理学会2004年年次大会, 2004年03月28日, 日本物理学会
    20040327, 20040330
  • Nonperturbative dynamics of fuzzy spheres in matrix models               
    Keiichi Nagao
    KEK Theory Workshop 2004, 2004年03月16日, 高エネルギー加速器研究機構, [招待有り]
    20040316, 20040318
  • Nonperturbative Studies of Fuzzy Spheres and Ginsparg-Wilson Fermion in Matrix Models               
    永尾 敬一
    大阪大学素粒子論研究室セミナー, 2004年02月10日, [招待有り]
  • Ginsparg-Wilson Relation and 't Hooft-Polyakov Monopole on Fuzzy 2-Sphere               
    Keiichi Nagao
    Sapporo Winter School in Niseko '04, 2004年01月09日, 北海道大学 素粒子論研究室
    20040108, 20040112
  • Nonperturbative Studies of the Fuzzy Sphere in a Matrix Model with the Chern-Simons Term               
    永尾 敬一
    茨城大学素粒子論研究室セミナー, 2003年12月08日, [招待有り]
  • Nonperturbative Studies of the Fuzzy Sphere in a Matrix Model with the Chern-Simons Term               
    永尾 敬一
    日本大学素粒子論研究室セミナー, 2003年12月03日, [招待有り]
  • Topological Invariants on the Noncommutative Torus               
    永尾敬一
    日本物理学会2003年秋季大会, 2003年09月10日, 日本物理学会
    20030909, 20030912
  • Axial anomaly with the overlap-Dirac operator in arbitrary dimensions               
    藤原 高徳、永尾 敬一(登壇者)、鈴木 博
    日本物理学会2003年秋季大会, 2003年09月10日, 日本物理学会
    20030909, 20030912
  • Chiral Anomaly and Ginsparg-Wilson Relation on the Noncommutative Torus               
    磯 暁、永尾 敬一(登壇者)
    日本物理学会2003年秋季大会, 2003年09月10日, 日本物理学会
    20030909, 20030912
  • Nonperturbative stability of the fuzzy sphere in a matrix model with the Chern-Simons term               
    東 武大(登壇者)、Subrata Bal、永尾 敬一、西村 淳
    日本物理学会2003年秋季大会, 2003年09月09日, 日本物理学会
    20030909, 20030912
  • Chiral Anomaly and Ginsparg-Wilson Relation on the Noncommutative Torus               
    永尾 敬一
    基研研究会「場の量子論2003」, 2003年08月05日, 京都大学基礎物理学研究所
  • Chiral Anomaly and Ginsparg-Wilson Relation on the Noncommutative Torus               
    永尾 敬一
    東京都立大学 素粒子論研究室セミナー, 2003年06月04日, [招待有り]
  • 行列模型とGinsparg-Wilson 関係式               
    青木 一、磯 暁、永尾 敬一(登壇者)
    日本物理学会2003年年次大会, 2003年03月28日, 日本物理学会
    20030328, 20030331
  • Ginsparg-Wilson Relation, Topological Invariants and Finite Noncommutative Geometry               
    永尾 敬一
    基研研究会「格子場の理論スクール」, 2002年10月22日, 京都大学基礎物理学研究所
    20021021, 20021025
  • 2次元非可換球面上でのDirac operatorとカイラルアノマリー               
    永尾 敬一
    数理物理2002「非可換幾何と数理物理」, 2002年09月22日, 東京大学数理科学研究科
    20020921, 20020923
  • 2次元非可換球面上でのDirac operator とカイラルアノマリー               
    青木 一、磯 暁、永尾 敬一(登壇者)
    日本物理学会2002年秋季大会, 2002年09月13日, 日本物理学会
    20020913, 20020916
  • 2次元非可換球面上でのDirac operatorとカイラルアノマリー               
    永尾 敬一
    基研研究会「場の量子論2002」, 2002年07月24日, 京都大学基礎物理学研究所
  • Vortex Fermion on the Lattice               
    永尾 敬一
    筑波大学素粒子論研究室セミナー, 2002年03月01日, [招待有り]
  • Vortex Fermion on the Lattice               
    永尾 敬一
    高エネルギー加速器研究機構 素粒子原子核研究所理論部セミナー, 2002年02月, [招待有り]
  • Vortex Fermion on the Lattice               
    Keiichi Nagao
    Sapporo Winter School 2002, 2002年01月10日, 北海道大学 素粒子論研究室
    20020109, 20020111
  • 格子ゲージ理論における vortex fermion の構成               
    永尾 敬一
    基研研究会「場の量子論の基礎的諸問題と応用」, 2001年12月20日, 京都大学基礎物理学研究所
    20011219, 20011221
  • 格子ゲージ理論におけるvortex fermion の構成               
    永尾敬一
    日本物理学会2001年秋季大会, 2001年09月22日, 日本物理学会
    20010922, 20010925
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling (II)               
    一瀬 郁夫、永尾 敬一(登壇者)
    日本物理学会2001年年次大会, 2001年03月27日, 日本物理学会
    20010327, 20010330
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling (II)               
    Keiichi Nagao
    Sapporo Winter School in Niseko '01, 2001年01月09日, 北海道大学 素粒子論研究室
    20010107, 20010111
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling               
    永尾 敬一
    日本大学素粒子論研究室セミナー, 2000年11月08日, [招待有り]
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling               
    一瀬 郁夫、永尾 敬一(登壇者)
    日本物理学会2000年春の分科会, 2000年03月31日, 日本物理学会
    20000330, 20000402
  • New approach to approximate solutions of Ginsparg-Wilson relation and its applications               
    永尾 敬一
    格子上のカイラル対称性に関する最近の進展, 2000年03月09日
    20000308, 20000309
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling               
    Keiichi Nagao
    Sapporo Winter School in Niseko '00, 2000年03月04日, 北海道大学 素粒子論研究室
    20000302, 20000306
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling               
    Ikuo Ichinose; Keiichi Nagao
    Dynamics of Gauge Fields: TMU-Yale Symposium, 1999年12月14日
    19991213, 19991215
  • Pion Mass and the PCAC Relation in the Overlap Fermion Formalism: Gauged Gross-Neveu Model on a Lattice               
    永尾 敬一
    東京都立大学素粒子論研究室セミナー, 1999年12月01日, [招待有り]
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling               
    永尾 敬一
    SUCAL99「超対称性、カイラル対称性と格子ゲージ理論」, 1999年11月18日
    19991117, 19991119
  • Lattice QCD with the Overlap Fermions at Strong Gauge Coupling               
    永尾 敬一
    東京大学駒場素粒子論研究室セミナー, 1999年11月10日
  • Pion Mass and the PCAC Relation in the Overlap Fermion Formalism: Gauged Gross-Neveu Model on a Lattice               
    永尾 敬一
    中央大学素粒子論研究室セミナー, 1999年10月05日, [招待有り]
  • Pion Mass and the PCAC Relation in the Overlap Fermion Formalism: Gauged,Gross-Neveu Model on a Lattice               
    一瀬 郁夫、永尾 敬一(登壇者)
    日本物理学会1999年秋の分科会, 1999年09月23日, 日本物理学会
    19990923, 19990926
  • Gauged Gross-Neveu model with Overlap Fermions               
    一瀬 郁夫; 永尾 敬一(登壇者)
    Chiral '99, 1999年09月, 台湾大学
    199909, 199909
  • Pion Mass and the PCAC Relation in the Overlap Fermion Formalism: Gauged Gross-Neveu Model on a Lattice               
    永尾 敬一
    中部夏の学校, 1999年08月23日
    19990823, 19990825
  • Pion Mass and the PCAC Relation in the Overlap Fermion Formalism: Gauged Gross-Neveu Model on a Lattice               
    永尾 敬一
    基研研究会「場の量子論と弦理論の新しい展開」, 1999年07月30日, 京都大学基礎物理学研究所
  • Theoreical Particle Physics               
    Keiichi Nagao
    JAMS '97, 1997年08月, 財団法人数理科学振興会, [招待有り]
    199708, 199708

担当経験のある科目(授業)

  • 情報リテラシー               
    茨城大学教育学部
  • 熱力学               
    茨城大学教育学部
  • 基礎物理学               
    茨城大学教育学部
  • 物理学概論               
    茨城大学教育学部
  • 電磁気学               
    茨城大学教育学部
  • 熱・統計力学               
    茨城大学教育学部
  • 物理学特論               
    茨城大学大学院教育学研究科
  • 物理学実験               
    茨城大学教育学部
  • 物理学演習I               
    茨城大学教育学部
  • 物理学演習II               
    茨城大学教育学部
  • ことばの力実践演習               
    茨城大学教育学部
  • 量子論入門               
    茨城大学教育学部
  • 教職実践演習               
    茨城大学教育学部
  • 初等理科内容研究               
    茨城大学教育学部
  • 初等物理学               
    茨城大学教育学部
  • 総合演習               
    茨城大学教育学部
  • 初等理科内容特論               
    茨城大学教職大学院
  • 理科科目研究(エネルギー)               
    茨城大学教職大学院
  • 自然現象の数理               
    茨城大学教職大学院
  • 自然科学総合演習               
    茨城大学大学院教育学研究科
  • 初等理科の内容と実践               
    茨城大学教育学部
  • 中等理科の内容と実践               
    茨城大学教育学部
  • 大学入門ゼミ               
    茨城大学教育学部
  • 主題別ゼミナール(サイエンス・コミュニケーション・スキル)               
    茨城大学教育学部
  • 卒業研究               
    茨城大学教育学部
  • 量子力学               
    茨城大学教育学部
  • 物理学               
    医療専門学校水戸メディカルカレッジ 看護学科
  • 基礎物理学               
    医療専門学校水戸メディカルカレッジ 理学療法学科
  • 物理学演習A               
    茨城大学教育学部
  • 物理学演習B               
    茨城大学教育学部

所属学協会

  • 1999年09月 - 現在, 日本物理学会
  • 1999年08月 - 現在, 素粒子論グループ

共同研究・競争的資金等の研究課題

社会貢献活動

  • R6年度茨城大学高大連携事業               
    講師
    茨城大学, 模擬授業「物理学概論」のスタンバイ, 2024年04月01日 - 2025年03月31日
  • R6年度 水戸メディカルカレッジ 理学療法学科 講師               
    講師
    2024年04月01日 - 2024年07月31日
  • R6年度 水戸メディカルカレッジ 看護学科 講師               
    講師
    2024年04月01日 - 2024年07月31日
  • R5年度茨城大学高大連携事業               
    講師
    茨城大学, 模擬授業「物理学概論」のスタンバイ, 2023年04月01日 - 2024年03月31日
  • R5年度 水戸メディカルカレッジ 理学療法学科 講師               
    講師
    2023年04月01日 - 2023年05月11日
  • R5年度 水戸メディカルカレッジ 看護学科 講師               
    講師
    2023年04月01日 - 2023年05月11日
  • R4年度茨城大学高大連携事業               
    講師
    茨城大学, 模擬授業「物理学概論」のスタンバイ, 2022年04月01日 - 2023年03月31日
  • R4年度 水戸メディカルカレッジ 理学療法学科 講師               
    講師
    2022年12月01日 - 2023年01月31日
  • R4年度 水戸メディカルカレッジ 看護学科 講師               
    講師
    2022年12月01日 - 2023年01月31日
  • R3年度茨城大学高大連携事業               
    講師
    茨城大学, 模擬授業「物理学概論」のスタンバイ, 2021年04月01日 - 2022年03月31日
  • R3年度 水戸メディカルカレッジ 理学療法学科 講師               
    講師
    2021年04月01日 - 2021年05月31日
  • R3年度 水戸メディカルカレッジ 看護学科 講師               
    講師
    2021年04月01日 - 2021年05月31日
  • R2年度茨城大学高大連携事業               
    講師
    茨城大学, 模擬授業「物理学概論」のスタンバイ, 2020年04月01日 - 2021年03月31日
  • R2年度 水戸メディカルカレッジ 理学療法学科 講師               
    講師
    2020年04月01日 - 2020年07月31日
  • R2年度 水戸メディカルカレッジ 看護学科 講師               
    講師
    2020年04月01日 - 2020年07月31日
  • 令和二年度いばらき理科教育推進事業「科学自由研究の指導(探究基礎)」夏休み科学自由研究相談会@オンライン               
    講師
    2020年07月21日 - 2020年07月21日
  • R元年度茨城大学高大連携事業               
    講師
    模擬授業「物理学概論」のスタンバイ, 2019年04月01日 - 2020年03月31日
  • 令和元年度いばらき理科教育推進事業「科学自由研究の指導(探究基礎)」夏休み科学自由研究相談会@茨城県女性プラザ               
    講師
    2019年07月31日 - 2019年07月31日
  • R元年度 水戸メディカルカレッジ 理学療法学科 講師               
    講師
    2019年04月01日 - 2019年07月31日
  • R元年度 水戸メディカルカレッジ 看護学科 講師               
    講師
    2019年04月01日 - 2019年07月31日
  • 令和元年度教員免許状更新講習・新展開講習(理科・農業)「量子論入門」               
    講師
    2019年06月16日 - 2019年06月16日
  • 令和元年度教員免許状更新講習・新展開講習(理科・農業)「素粒子論入門」               
    講師
    2019年06月16日 - 2019年06月16日
  • 令和元年度科学の甲子園ジュニア茨城県大会の問題についての助言と指導               
    助言・指導
    茨城県教育委員会, 2019年05月22日 - 2019年05月22日
  • 高校生を対象とした研究室見学会               
    講師
    2019年03月30日 - 2019年03月30日
  • 平成30年度教員免許状更新講習・新展開講習(理科・農業)「量子論入門」(午前の部)               
    講師
    2018年08月29日 - 2018年08月29日
  • 平成30年度教員免許状更新講習・新展開講習(理科・農業)「量子論入門」(午後の部)               
    講師
    2018年08月29日 - 2018年08月29日
  • 平成30年度科学の甲子園ジュニア茨城県大会の運営についての助言               
    助言・指導
    茨城県教育委員会, 2018年08月25日 - 2018年08月25日
  • 平成30年度いばらき理科教育推進事業「科学自由研究の指導(探究基礎)」夏休み科学自由研究相談会@茨城県女性プラザ               
    講師
    2018年07月31日 - 2018年07月31日
  • 平成30年度科学の甲子園ジュニア茨城県大会の問題についての助言と指導               
    助言・指導
    茨城県教育委員会, 2018年06月06日 - 2018年06月06日
  • 平成29年度小学校理科教育推進事業「理科授業の質の向上」推進地域モデル小学校公開授業研究会@鉾田市立鉾田小学校               
    講師
    2017年10月26日 - 2017年10月26日
  • 平成29年度小学校理科教育推進事業「科学自由研究の指導(探究基礎)」夏休み科学自由研究相談会@茨城県女性プラザ               
    講師
    2017年07月31日 - 2017年07月31日
  • 平成29年度科学の甲子園ジュニア茨城県大会の問題についての助言と指導               
    助言・指導
    茨城県教育委員会, 2017年06月 - 2017年06月
  • 平成28年度小学校理科教育推進事業「理科授業の質の向上」推進地域モデル小学校公開授業研究会@鹿嶋市立中野西小学校               
    講師
    2016年11月15日 - 2016年11月15日
  • 平成28年度いばらき理科教育推進事業「科学自由研究の指導(活用・発展)」ミニ博士によるミニ学会@ミュージアムパーク茨城県自然博物館               
    講師
    2016年10月23日 - 2016年10月23日
  • 平成28年度小学校理科教育推進事業「科学自由研究の指導(探究基礎)」夏休み科学自由研究相談会@茨城県女性プラザ               
    講師
    2016年08月01日 - 2016年08月01日
  • 平成27年度いばらき理科教育推進事業「科学自由研究の指導(活用・発展)」ミニ博士によるミニ学会@ミュージアムパーク茨城県自然博物館               
    講師
    2015年10月25日 - 2015年10月25日
  • 平成27年度小学校理科教育推進事業「理科授業の質の向上」推進地域モデル小学校公開授業研究会@常陸太田市立太田小学校               
    講師
    2015年10月07日 - 2015年10月07日
  • 平成27年度小学校理科教育推進事業「科学自由研究の指導(探究基礎)」夏休み科学自由研究相談会@茨城県女性プラザ               
    講師
    2015年07月30日 - 2015年07月30日
  • 平成26年度小学校理科教育推進事業「理科授業の質の向上」推進地域モデル小学校公開授業研究会@土浦市立都和南小学校               
    講師
    2014年11月28日 - 2014年11月28日
  • 平成26年度いばらき理科教育推進事業「科学自由研究の指導(活用・発展)」ミニ博士によるミニ学会@ミュージアムパーク茨城県自然博物館               
    講師
    2014年10月26日 - 2014年10月26日
  • 平成26年度小学校理科教育推進事業「科学自由研究の指導(探究基礎)」夏休み科学自由研究相談会@茨城県女性プラザ               
    講師
    2014年07月31日 - 2014年07月31日
  • 平成25年度小学校理科教育推進事業「理科授業の質の向上」推進地域モデル小学校公開授業研究会@小美玉市立野田小学校               
    講師
    2013年11月28日 - 2013年11月28日
  • 平成24年度小学校理科教育推進事業「理科授業の質の向上」推進地域モデル小学校公開授業研究会@那珂市立横堀小学校               
    講師
    2012年11月15日 - 2012年11月15日
  • 平成23年度「いばらきサイエンスキッズ育成プラン」推進地域モデル小学校授業研究会@鹿嶋市立三笠小学校               
    講師
    2011年11月29日 - 2011年11月29日
  • 平成22年度教員免許更新講習・新展開講習(理科・農業)「素粒子物理学入門」               
    講師
    2010年08月24日 - 2010年08月24日
  • 平成19年度サイエンス・パートナーシップ・プログラム(SPP)事業「教員研修」・中学校理科「理数系教員指導力向上研修(希望型)」「素粒子の話」               
    講師
    2007年10月13日 - 2007年10月13日
  • 平成18年度茨城大学公開講座「素粒子物理学入門 -基本的な考え方から超弦理論まで-」               
    講師
    茨城大学生涯学習教育研究センター, 2006年06月 - 2006年06月
  • 平成17年度SPP事業による教員研修「橋で考える力の性質」               
    講師
    2005年10月22日 - 2005年10月22日

メディア報道

  •    「理科教育向上に成果」               
    茨城新聞, 茨城新聞, 2018年08月01日, 新聞・雑誌

その他(主要なその他成果)

  • コペンハーゲン大学ニールス・ボーア研究所客員研究員
    2021年11月 - 2022年11月
  • コペンハーゲン大学ニールス・ボーア研究所客員研究員
    2008年04月 - 2008年09月