Rchr
J-GLOBAL ID:201301040783067792
Update date: Sep. 22, 2023
Hashimoto Shoji
ハシモト ショウジ | Hashimoto Shoji
Affiliation and department:
Job title:
教授
Homepage URL (1):
http://kaken.nii.ac.jp/d/r/90280510.ja.html
Research field (1):
Theoretical studies related to particle-, nuclear-, cosmic ray and astro-physics
Research keywords (30):
格子QCD
, B中間子
, 小林益川行列
, 素粒子論
, カイラル対称性
, 量子色力学
, 格子ゲージ理論
, 非等方格子
, セミレプトニック崩壊
, 重いクォーク
, 有効理論
, トポロジー
, Bメソン
, 計算科学
, 形状因子
, 超対称模型
, バクパラメータ
, CP対称性
, 大規模数値シミュレーション
, リトルヒッグス模型
, Fermilab作用
, Bファクトリー
, 電気双極子モーメント
, HQET
, 素粒子物理学
, full QCD
, 繰り込み定数
, TeV領域
, 崩壊定数
, カイラル極限
Research theme for competitive and other funds (16):
- 2018 - 2022 Quark-hadron duality in B meson semileptonic decays
- 2014 - 2018 Precision test of the Standard Model by fine lattice calculations
- 2008 - 2013 Search for a new elementary particle picture at the TeV scale through flavor physics
- 2009 - 2013 Study of topological vacuum structure of Quantum Chromodynamics using lattice theory with exact chiral symmetry
- 2008 - 2012 vacuum structure and quark dynamics based on quantum chromodynamics
- 2008 - 2012 Interdisciplinary algorithms and computer simulations
- 2009 - 2009 厳密なカイラル対称性をもつ格子理論による量子色力学の精密シミュレーション
- 2008 - 2008 新しい格子ゲージ理論の利用法が切り開く超対称模型の精密検証
- 2006 - 2008 Study of Quantum Chromodynamics using lattice gauge theory with exact chiral symmetry
- 2006 - 2007 格子カイラルフェルミオンが可能にする超対称模型の精密検証
- 2004 - 2006 Heavy quark physics with anisotropic lattice QCD
- 2004 - 2005 B中間子のセミレプトニック崩壊と小林益川行列要素の決定
- 2002 - 2005 Non-perturbative construction of heavy quark effective theory on the lattice
- 2000 - 2001 Precise computation of weak matrix elements of B meson with lattice QCD
- 1999 - 2000 B→D^<(*)>lv崩壊の形状因子|V_<cb>|の決定
- 1997 - 1997 格子QCDによるBメソンのセミレプトニック崩壊構造関数の計算
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Papers (281):
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Issaku Kanamori, Sinya Aoki, Yasumichi Aoki, Hidenori Fukaya, Jishnu Goswami, Shoji Hashimoto, Takashi Kaneko, Yu Zhang. Thermodynamics with Möbius domain wall fermions near physical point (II). Proceedings of The 39th International Symposium on Lattice Field Theory - PoS(LATTICE2022). 2023
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Takashi Kaneko, Y. Aoki, B. Colquhoun, M. Faur, H. Fukaya, S. Hashimoto, J. Koponen, E. Kou. $B \to D^{(*)}\ell\nu$ semileptonic decays in lattice QCD with domain-wall heavy quarks. Proceedings of The 38th International Symposium on Lattice Field Theory - PoS(LATTICE2021). 2022
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Hidenori Fukaya, Sinya Aoki, Yasumichi Aoki, Shoji Hashimoto, Christian Rohrhofer, Kei Suzuki. What is chiral susceptibility probing?. Proceedings of The 38th International Symposium on Lattice Field Theory - PoS(LATTICE2021). 2022
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Yasumichi Aoki, Sinya Aoki, Hidenori Fukaya, Shoji Hashimoto, Issaku Kanamori, Takashi Kaneko, Yoshifumi Nakamura. 2+1 flavor fine lattice simulation at finite temperature with domain-wall fermions. Proceedings of The 38th International Symposium on Lattice Field Theory - PoS(LATTICE2021). 2022
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S Aoki, Y Aoki, H Fukaya, S Hashimoto, C Rohrhofer, K Suzuki. Role of the axial U(1) anomaly in the chiral susceptibility of QCD at high temperature. Progress of Theoretical and Experimental Physics. 2022. 2022. 2
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MISC (16):
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Aoki, Y., Blum, T., Colangelo, G., Collins, S., Della Morte, M., Dimopoulos, P., Dürr, S., Feng, X., Fukaya, H., Golterman, M., et al. FLAG Review 2021. Eur.Phys.J.C. 2022. 82. 10. 869-869
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Sinya Aoki, Guido Cossu, Hidenori Fukaya, Shoji Hashimoto, Takashi Kaneko. Topological susceptibility in 2+1-flavor QCD with chiral fermions. 2017
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FUKAYA Hidenori, HASHIMOTO Shoji. Numerical Evidence of Chiral Symmetry Breaking in QCD. Butsuri. 2008. 63. 4. 286-290
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Fukaya Hidenori, Hashimoto Shoji, Hirohashi Takuya, Ogawa Kenji, Onogi Tetsuya. 27aXE-1 Lattice gauge action without topology changes 1 : Stability of the topologioal charge. Meeting abstracts of the Physical Society of Japan. 2005. 60. 1. 14-14
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Ogawa Kenji, Fukaya Hidenori, Hashimoto Shoji, Hirohashi Takuya, Oonogi Tetsuya. 27aXE-3 Lattice gauge action without topology changes. Meeting abstracts of the Physical Society of Japan. 2005. 60. 1. 14-14
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Work history (1):
- 2011 - 2012 大学共同利用機関法人高エネルギー加速器研究機構 素粒子原子核研究所 教授
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