1.

Holographic computation of quantum corrections to the bulk cosmological constant
/ Aoki, Sinya ; Balog, Janos ; Yokoyama, Shuichi
We explore the construction of the dual bulk theory in the flow equation approach. [...]
Published in PTEP 2019 (2019) 043B06
10.1093/ptep/ptz026
arXiv:1804.4636
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2.

N Ω dibaryon from lattice QCD near the physical point
/ Iritani, Takumi ; Aoki, Sinya ; Doi, Takumi ; Etminan, Faisal ; et al
The nucleon( N )Omega(Ω) system in the Swave and spin2 channel ( S25 ) is studied from the (2+1)flavor lattice QCD with nearly physical quark masses ( mπ≃146MeV and mK≃525MeV ). [...]
Published in Physics letters B 792 (2019) 284289
10.1016/j.physletb.2019.03.050
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3.

Consistency between Lüscher’s finite volume method and HAL QCD method for twobaryon systems in lattice QCD
/ Iritani, Takumi ; Aoki, Sinya ; Doi, Takumi ; Hatsuda, Tetsuo ; et al
There exist two methods to study twobaryon systems in lattice QCD: the direct method which extracts eigenenergies from the plateaux of the temporal correlation function and the HAL QCD method which extracts observables from the nonlocal potential associated with the tempospatial correlation function. [...]
Published in JHEP 1903 (2019) 007
10.1007/JHEP03(2019)007
arXiv:1812.08539
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4.

Systematics of the HAL QCD potential at low energies in lattice QCD
/ Iritani, Takumi ; Aoki, Sinya ; Doi, Takumi ; Gongyo, Shinya ; et al
The $\Xi \Xi $ interaction in the ${}^{1}{S}_{0}$ channel is studied to examine the convergence of the derivative expansion of the nonlocal HAL QCD potential at the nexttonexttoleading order (${N}^{2}\mathrm{LO}$). [...]
Published in Physical Review D 99 (2019)
10.1103/PhysRevD.99.014514
arXiv:1805.02365
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5.

Asymptotic behavior of Nambu–Bethe–Salpeter wave functions for scalar systems with a bound state
/ Gongyo, Shinya ; Aoki, Sinya
We study the asymptotic behaviors of the Nambu–Bethe–Salpeter (NBS) wave functions, which are important for the HAL QCD potential method to extract hadron interactions, in the case that a bound state exists in the system. [...]
Published in PTEP 2018 (2018) 093B03
10.1093/ptep/pty097
arXiv:1807.02967
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6.

Comment on “Relation between scattering amplitude and BetheSalpeter wave function in quantum field theory”
/ Aoki, Sinya ; Doi, Takumi ; Hatsuda, Tetsuo ; Ishii, Noriyoshi
We invalidate the arguments given in [T. [...]
Published in Physical Review D 98 (2018)
10.1103/PhysRevD.98.038501
arXiv:1711.09344
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7.

AdS geometry from CFT on a general conformally flat manifold
/ Aoki, Sinya ; Yokoyama, Shuichi
We construct an antideSitter (AdS) geometry from a conformal field theory (CFT) defined on a general conformally flat manifold via a flow equation associated with the curved manifold, which we refer to as the primary flow equation. [...]
Published in Nuclear Physics B (2018)
10.1016/j.nuclphysb.2018.06.004
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8.

Most Strange Dibaryon from Lattice QCD
/ Gongyo, Shinya ; Sasaki, Kenji ; Aoki, Sinya ; Doi, Takumi ; et al
The $\Omega \Omega $ system in the ${}^{1}{S}_{0}$ channel (the most strange dibaryon) is studied on the basis of the ($2+1$)flavor lattice QCD simulations with a large volume $(8.1\text{}\text{}\mathrm{fm}{)}^{3}$ and nearly physical pion mass ${m}_{\pi}\simeq 146\text{}\text{}\mathrm{MeV}$ at a lattice spacing of $a\simeq 0.0846\text{}\text{}\mathrm{fm}$. [...]
Published in Physical Review Letters 120 (2018)
10.1103/PhysRevLett.120.212001
arXiv:1709.00654
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9.

I = 2 π π scattering phase shift from the HAL QCD method with the LapH smearing
/ Kawai, Daisuke ; Aoki, Sinya ; Doi, Takumi ; Ikeda, Yoichi ; et al
Physical observables, such as the scattering phase shifts and binding energy, calculated from the nonlocal HAL QCD potential do not depend on the sink operators used to define the potential. [...]
Published in PTEP 2018 (2018) 043B04
10.1093/ptep/pty032
arXiv:1711.01883
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10.

Flow equation, conformal symmetry, and antide Sitter geometry
/ Aoki, Sinya ; Yokoyama, Shuichi
We argue that the antide Sitter (AdS) geometry in dimensions naturally emerges from an arbitrary conformal field theory in dimensions using the free flow equation. [...]
Published in PTEP 2018 (2018) 031B01
10.1093/ptep/pty013
arXiv:1707.03982
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