Fundamental Quantum Science Program High-Energy QCD Theory Research Team
Team Director: Sinya Aoki (D.Sc.)
Research Summary
Quantum chromodynamics (QCD) describes the strong interaction binding quarks and gluons, offering fundamental insight into quantum systems ranging from nucleons to dense quark matter in neutron stars. As a mathematically sophisticated branch of quantum field theory, QCD deeply influences neighboring fields such as condensed matter physics and computational science.
Our team leads theoretical research in high-energy QCD, addressing core questions like the origin of nucleon mass and spin. We connect our theoretical framework directly to leading experimental programs, including the LHC and the upcoming Electron-Ion Collider (EIC) at Brookhaven National Laboratory.
Main Research Fields
- Mathematical & Physical Sciences
Related Research Fields
- Interdisciplinary Science & Engineering
- Theoretical studies related to particle-, nuclear-,cosmic ray and astro-physics
Keywords
- Elementary Particle Physics
- Theoretical Quantum Field theory
- Quantum Chromodynamics (QCD)
- High Density Nuclear Matter
- Electron Ion Collider Experiment
Selected Publications
Papers with an asterisk(*) are based on research conducted outside of RIKEN.
- 1.
Lyu, Y., Aoki, S., Doi, T., Hatsuda, T., Ikeda, Y. and Meng, J.
"Doubly Charmed Tetraquark Tcc+ from Lattice QCD near Physical Point"
Phys. Rev. Lett. 131 (2023) no.16, 161901 - 2.
Lyu, Y., Tong, H., Sugiura, T., Aoki, S., Doi T., Hatsuda T., Meng. J. and Miyamoto, T.
"Dibaryon with Highest Charm Number near Unitarity from Lattice QCD"
Phys. Rev. Lett. 127 (2021) no.7, 072003 - 3.
Sasaki, K., Aoki, S., Doi, T., Gongyo, S., Hatsuda, T., Ikeda, Y., Inoue, T., Iritani, T., Ishii, N., Murano, K. and Miyamoto, T.
"ΛΛ and NΞ interactions from Lattice QCD near the physical point"
Nucl. Phys. A 998 (2020) 121737 - 4.
Gongyo, S., Sasaki, K., Aoki, S., Doi, T., Hatsuda, T., Ikeda, Y., Inoue, T., Iritani, T., Ishii, N., Miyamoto, T. and Nemura, H.
"Most Strange Dibaryon from Lattice QCD",
Phys. Rev. Lett. 120 (2018) 212001 - 5.
Aoki, S., Doi, T., Hatsuda, T., Ikeda, Y., Inoue, T., Ishii, N., Murano, K., Nemura, H. and Sasaki, K.
"Lattice QCD approach to Nuclear Physics"
Prog. Theor. Exp. Phys. (2012) 2012 (1):: 01A105 - 6.
Ishii, N., Aoki, S., Doi, T., Hatsuda, T., Ikeda, Y., Inoue, T., Murano, K., Nemura, H. and Sasaki, K.
"Hadron-Hadron Interactions from Imaginary-time Nambu-Bethe-Salpeter Wave Function on the Lattice"
Phys. Lett. B712 (2012) 437-441 - 7.
Doi, T., Aoki, S., T., Hatsuda, T., Ikeda, Y., Inoue, T., Ishii, N., Murano, K., Nemura, H. and Sasaki, K.
"Exploring Three-Nucleon Forces in Lattice QCD"
Prog. Theor. Phys. 127 No.4 (2012) 723-738 - 8.
Inoue, T., Ishii, N., Aoki, S., Doi, T., Hatsuda, T., Ikeda, Y., Murano, K., Nemura, H. and Sasaki, K.
"Bound H-dibaryon in Flavor SU (3) Limit of Lattice QCD
Phys. Rev. Lett. 106 (2011) 162002 - 9.
Ishii, N., Aoki, S. and Hatsuda, T.
"The Nuclear Force from Lattice QCD"
Phys. Rev. Lett. 99 (2007), 022001 - 10.
*Aoki, S.
"New phase structure for lattice QCD with Wilson fermions"
Phys. Rev. D30 (1984) No.12 2653-2663.
Related Links
Lab Members
Principal investigator
- Sinya Aoki
- Team Director
Careers
| Position | Deadline |
|---|---|
| Seeking a Research Scientist or a Senior Research Scientist (Indefinite-term) (26-1024) | Sep. 30, 2026 |
Contact Information
Information Science Building, Wako Campus
2-1 Hirosawa, Wako, Saitama, 351-0198 Japan
Tel: +81-(0)48-462-1111 (Main)
Email: trip_pr@ml.riken.jp
