重力理論研究室の研究成果
原著論文 (2002年着任以降)
査読付き論文
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Symmetry breaking of 3-dimensional AdS in holographic semiclassical gravity
JHEP 02 (2024) 146,
A. Ishibashi, K. Maeda, and T. Okamura
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Pole-skipping as missing states
Phys. Rev. D108 (2023) 106006,
M. Natsuume and T. Okamura
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Pole-skipping in a non-black hole geometry
Phys. Rev. D108 (2023) 046012,
M. Natsuume and T. Okamura
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Semiclassical Einstein equations from holography and boundary dynamics
JHEP 05 (2023) 212,
A. Ishibashi, K. Maeda, and T. Okamura
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Holographic Meissner effect
Phys. Rev. D106 (2022) 086005,
M. Natsuume and T. Okamura
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Nonuniqueness of scattering amplitudes at special points
Phys. Rev. D104 (2021) 126007,
M. Natsuume and T. Okamura
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Pole-skipping and zero temperature
Phys. Rev. D103 (2021) 066017,
M. Natsuume and T. Okamura
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Holographic chaos, pole-skipping, and regularity
PTEP 2020 013B07,
M. Natsuume and T. Okamura
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Pole-skipping with finite-coupling corrections
Phys. Rev. D100 (2019) 126012,
M. Natsuume and T. Okamura
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Nonuniqueness of Green's functions at special point
JHEP 12 (2019) 139,
M. Natsuume and T. Okamura
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Holographic Lifshitz superconductors: analytic solution
Phys. Rev. D97 (2018) 066016,
M. Natsuume and T. Okamura
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Kibble-Zurek scaling in holography
Phys. Rev. D95 (2017) 106009,
M. Natsuume and T. Okamura
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Holographic superfluid flows with a localized repulsive potential
Phys. Rev. D94 (2016) 046007,
A. Ishibashi, K. Maeda, and T. Okamura
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The enhanced holographic superconductor: is it possible?
JHEP 08 (2013) 139,
M. Natsuume and T. Okamura
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The Incompressible Rindler fluid versus the Schwarzschild-AdS fluid
PTEP 2013 023B01,
Y. Matsuo, M. Natsuume, M. Ohta, and T. Okamura
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Inhomogeneous charged black hole solutions in asymptotically anti-deSitter spacetime
Phys. Rev. D85 (2012) 066003,
K. Maeda, T. Okamura, and J. Koga
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Vortex flow for a holographic superconductor
Phys. Rev. D83 (2011) 066004,
K. Maeda and T. Okamura
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Dynamic universality class of large-N gauge theories
Phys. Rev. D83 (2011) 046008,
M. Natsuume and T. Okamura
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Two pieces of folklore in the AdS/CFT duality
Phys. Rev. D82 (2010) 046002,
K. Maeda, M. Natsuume and T. Okamura
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Vortex lattice for a holographic superconductor
Phys. Rev. D81 (2010) 026002,
K. Maeda, M. Natsuume and T. Okamura
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Universality class of holographic superconductors
Phys. Rev. D79 (2009) 126004,
K. Maeda, M. Natsuume and T. Okamura
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A note on causal hydrodynamics for M-theory branes
Prog. of Theor. Phys. 120 (2008) 1217,
M. Natsuume and T. Okamura
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Dynamic critical phenomena in the AdS/CFT duality
Phys. Rev. D78 (2008) 106007,
K. Maeda, M. Natsuume and T. Okamura
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Characteristic length of an AdS/CFT superconductor
Phys. Rev. D78 (2008) 106006,
K. Maeda and T. Okamura
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Radiation from an accelerated quark via AdS/CFT correspondence
Phys. Rev. D77 (2008) 126002,
K. Maeda and T. Okamura
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Causal hydrodynamics of gauge theory plasmas from AdS/CFT duality
Phys. Rev. D77 (2008) 066014,
M. Natsuume and T. Okamura
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Screening length and the direction of plasma winds
JHEP 09 (2007) 039,
M. Natsuume and T. Okamura
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Screening length in plasma winds
JHEP 10 (2006) 011,
E. Caceres, M. Natsuume and T. Okamura
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Extracting information behind the veil of horizon
Phys. Rev. D74 (2006) 046010,
K. Maeda, M. Natsuume and T. Okamura
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Viscosity of gauge theory plasma with a chemical potential
from AdS/CFT correspondence
Phys. Rev. D73 (2006) 066013,
K. Maeda, M. Natsuume and T. Okamura
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Mirror effect induced by the dilaton field on the Hawking radiation,
Class. Quantum Grav.23 (2006) 1571,
K. Maeda and T. Okamura
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Quasinormal modes for nonextreme Dp-branes
and thermalizations of super-Yang-Mills theories,
Phys. Rev. D72 (2005) 086012,
K. Maeda, M. Natsuume and T. Okamura
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Noncommutative Quantum Mechanics and the Seiberg-Witten Map,
Phys. Rev. D69 (2004) 125007,
A. Kokado, T. Okamura and T. Saito
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Noncommutative Phase Space and the Hall Effect,
Prog. of Theor. Phys. 110 (2003) 975,
A. Kokado, T. Okamura and T. Saito
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BLACK HOLE ENTROPY IN THE MEMBRANE PARADIGM,
Int. J. of Mod. Phys. D11 (2002) 789,
T. Shimomura, T. Okamura and T. Mishima
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Addendum to "Does the generalized second law hold
in the form of time derivative expression?",
Phys. Rev. D65 (2002) 107502,
T. Shimomura and T. Okamura
集中講義
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「『曲がった時空上の量子場』入門」
大阪市立大学 大学院理学研究科 (2012年10月30日〜11月1日)
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「重力屋のためのゲージ/重力対応入門」
京都大学基礎物理学研究所 (2010年3月8日, 9日)