現代教養学部

尾田 欣也

オダ キンヤ  (Kin-ya Oda)

基本情報

所属
東京女子大学 現代教養学部 数理科学科 情報理学専攻 教授
学位
博士(理学)(2001年3月 大阪大学)

研究者番号
60442943
ORCID ID
 https://orcid.org/0000-0003-3021-1661
J-GLOBAL ID
202001020027650896
researchmap会員ID
R000009457

受賞

 1

論文

 54
  • Hikaru KAWAI, Kawana, Kiyoharu, Kin-ya Oda, Yagyu, Kei
    Phys.Rev.D 109(8) 085009-085009 2024年4月11日  
  • Haruhi Mitani, Kin-ya Oda
    Physics Letters B 2023年7月23日  
    There is renewed attention to whether we can observe the decoherence effect in neutrino oscillation due to the separation of wave packets with different masses in near-future experiments. As a contribution to this endeavor, we extend the existing formulation based on a single 1D Gaussian wave function to an amplitude between two distinct 3D Gaussian wave packets, corresponding to the neutrinos being produced and detected, with different central momenta and spacetime positions and with different widths. We find that the spatial widths-squared for the production and detection appear additively in the (de)coherence length and in the localization factor for governing the propagation of the wave packet, whereas they appear as the reduced one (inverse of the sum of inverse) in the momentum conservation factor. The overall probability is governed by the ratio of the reduced to the sum.
  • Hamada, Yuta, Kawai, Hikaru, Kawana, Kiyoharu, Oda, Kin-ya, Yagyu, Kei
    Eur.Phys.J.C 82(5) 481-481 2022年5月25日  査読有り
  • Yuta Hamada, Hikaru Kawai, Kiyoharu Kawana, Kin-ya Oda, Kei Yagyu
    The European Physical Journal C 2021年11月  査読有り
  • Kin-ya Oda, Juntaro Wada
    The European Physical Journal C 2021年4月5日  
    We define a set of fully Lorentz-invariant wave packets and show that it spans the corresponding one-particle Hilbert subspace, and hence the whole Fock space as well, with a manifestly Lorentz-invariant completeness relation (resolution of identity). The position-momentum uncertainty relation for this Lorentz-invariant wave packet deviates from the ordinary Heisenberg uncertainty principle, and reduces to it in the non-relativistic limit.

MISC

 5
  • Naoyuki Haba, Kin-ya Oda, Ryo Takahashi
    JOURNAL OF HIGH ENERGY PHYSICS 05(5) 125-125 2011年2月9日  
    We study implications of generalized non-zero Dirichlet boundary condition along with the ordinary Neumann one on a bulk scalar in the Randall-Sundrum warped compactification. First we show profiles of vacuum expectation value of the scalar under the general boundary conditions. We also investigate Goldberger-Wise mechanism in several setups with the general boundary conditions of the bulk scalar field and find that the mechanism can work under non-zero Dirichlet boundary conditions with appropriate vacuum expectation values. Especially, we show that $SU(2)_R$ triplet Higgs in the bulk left-right symmetric model with custodial symmetry can be identified with the Goldberger-Wise scalar.
  • Naoyuki Haba, Kin-ya Oda, Ryo Takahashi
    JOURNAL OF HIGH ENERGY PHYSICS (11) 2010年11月  
  • Naoyuki Haba, Kin-ya Oda, Ryo Takahashi
    NUCLEAR PHYSICS B 824(1-2) 331-332 2010年1月  
  • Naoyuki Haba, Kin-ya Oda, Ryo Takahashi
    ACTA PHYSICA POLONICA B 41(6) 1291-1316 2009年10月23日  
    We clarify and study our previous observation that, under a compactification with boundaries or orbifolding, vacuum expectation value of a bulk scalar field can have different extra-dimensional wave-function profile from that of the lowest Kaluza-Klein mode of its quantum fluctuation, under presence of boundary-localized potentials which would be necessarily generated through renormalization group running. For concreteness, we analyze the Universal Extra Dimension model compactified on orbifold $S^1/Z_2$, with brane-localized Higgs potentials at the orbifold fixed points. We compute the Kaluza-Klein expansion of the Higgs and gauge bosons in an $R_\xi$-like gauge by treating the brane-localized potential as a small perturbation. We also check that the $\rho$ parameter is not altered by the brane localized potential.
  • Naoyuki Haba, Kin-ya Oda, Ryo Takahashi
    ACTA PHYSICA POLONICA B 42(1) 33-44 2009年10月18日  
    We propose a simple five-dimensional extension of the Standard Model (SM) without any Higgs potential nor any extra fields. A Higgs doublet lives in the bulk of a flat line segment and its boundary condition is Dirichlet at the ends of the line, which causes the electroweak symmetry breaking without Higgs potential. The vacuum expectation value of the Higgs is induced from the Dirichlet boundary condition which is generally allowed in higher dimensional theories. The lightest physical Higgs has non-flat profile in the extra dimension even though the vacuum expectation value is flat. As a consequence, we predict a maximal top Yukawa deviation (no coupling between top and Higgs) for the Brane-Localized Fermion and a small deviation, a multiplication of 2\sqrt{2}/\pi\simeq0.9 to the Yukawa coupling, for the Bulk Fermion. The latter is consistent with the electroweak precision data within 90% CL for 430GeV\lesssim m_{KK}\lesssim 500GeV.

共同研究・競争的資金等の研究課題

 9