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Takaya Miyamoto
Takaya Miyamoto
NEC Corporation, Biometrics Research Laboratories
Verified email at nec.com
Title
Cited by
Cited by
Year
ΛΛ and NΞ interactions from Lattice QCD near the physical point
K Sasaki, S Aoki, T Doi, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, ...
Nuclear Physics A 998, 121737, 2020
1282020
Most strange dibaryon from lattice QCD
S Gongyo, K Sasaki, S Aoki, T Doi, T Hatsuda, Y Ikeda, T Inoue, T Iritani, ...
Physical review letters 120 (21), 212001, 2018
1242018
Most Strange Dibaryon from Lattice QCD
S Aoki, T Iritani, T Inoue, T Hatsuda, T Miyamoto, S Gongyo, Y Ikeda, ...
Physical Review Letters 120 (arXiv: 1709.00654), 2018
124*2018
NΩ dibaryon from lattice QCD near the physical point
T Iritani, S Aoki, T Doi, F Etminan, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, ...
Physics Letters B 792, 284-289, 2019
1162019
ΛcN interaction from lattice QCD and its application to Λc hypernuclei
T Miyamoto, S Aoki, T Doi, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, ...
Nuclear Physics A 971, 113-129, 2018
482018
Dibaryon with highest charm number near unitarity from lattice QCD
Y Lyu, H Tong, T Sugiura, S Aoki, T Doi, T Hatsuda, J Meng, T Miyamoto
Physical Review Letters 127 (7), 072003, 2021
402021
Lattice QCD studies on baryon interactions in the strangeness-2 sector with physical quark masses
K Sasaki, S Aoki, T Doi, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, ...
EPJ Web of Conferences 175, 05010, 2018
382018
Possible Lightest Hypernucleus with Modern Interactions
E Hiyama, K Sasaki, T Miyamoto, T Doi, T Hatsuda, Y Yamamoto, ...
Physical review letters 124 (9), 092501, 2020
362020
Baryon interactions from lattice QCD with physical quark masses–Nuclear forces and ΞΞ forces–
T Doi, T Iritani, S Aoki, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, N Ishii, ...
EPJ Web of Conferences 175, 05009, 2018
352018
Baryon interactions from lattice QCD with physical masses—strangeness S=-1 sector—
H Nemura, S Aoki, T Doi, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, ...
EPJ Web of Conferences 175, 05030, 2018
332018
I = 2 ππ scattering phase shift from the HAL QCD method with the LapH smearing
HAL QCD Collaboration, D Kawai, S Aoki, T Doi, Y Ikeda, T Inoue, T Iritani, ...
Progress of Theoretical and Experimental Physics 2018 (4), 043B04, 2018
242018
Baryon interactions from lattice QCD with physical masses -- sector --
K Sasaki, S Aoki, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, N Ishii, ...
arXiv preprint arXiv:1702.06241, 2017
202017
Baryon interactions from lattice QCD with physical masses—S=− 3 sector: Ξ∑ and Ξ∑-Λ∑—
N Ishii, S Aoki, T Doi, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, ...
EPJ Web of Conferences 175, 05013, 2018
19*2018
Baryon interactions from lattice QCD with physical masses -- Overview and sectors --
S Aoki, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, N Ishii, ...
arXiv preprint arXiv:1702.01600, 2017
182017
potential in the HAL QCD method with all-to-all propagators
Y Akahoshi, S Aoki, T Aoyama, T Doi, T Miyamoto, K Sasaki
Progress of Theoretical and Experimental Physics 2019 (8), 083B02, 2019
172019
d⁎(2380) dibaryon from lattice QCD
S Gongyo, K Sasaki, T Miyamoto, S Aoki, T Doi, T Hatsuda, Y Ikeda, ...
Physics Letters B 811, 135935, 2020
162020
Partial wave decomposition on the lattice and its applications to the HAL QCD method
T Miyamoto, Y Akahoshi, S Aoki, T Aoyama, T Doi, S Gongyo, K Sasaki
Physical Review D 101 (7), 074514, 2020
162020
Lambda-Nucleon and Sigma-Nucleon interactions from lattice QCD with physical masses
H Nemura, S Aoki, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, N Ishii, ...
arXiv preprint arXiv:1702.00734, 2017
152017
First results of baryon interactions from lattice QCD with physical masses (1)--General overview and two-nucleon forces--
S Aoki, S Gongyo, T Hatsuda, Y Ikeda, T Inoue, T Iritani, N Ishii, ...
arXiv preprint arXiv:1512.01610, 2015
82015
The HAL QCD potential in the I = 1 π π system with the ρ meson bound state
Y Akahoshi, S Aoki, T Aoyama, T Doi, T Miyamoto, K Sasaki
Progress of Theoretical and Experimental Physics 2020 (7), 073B07, 2020
72020
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