collaborators

7 papers

nucl-th2026

Theoretical study of the correlation function

Yuki Kamiya, Asanosuke Jinno, Tetsuo Hyodo +1

We study - () momentum correlation functions in the high-energy nuclear collisions to investigate the nature of the interactions. We employ the foldi…

nucl-th2026

Hyperon single-particle potentials in nuclear matter based on baryon-baryon interactions derived within chiral effective field theory

Asanosuke Jinno, Johann Haidenbauer, Ulf-G. Meißner

An analysis of the Lambda and Sigma single-particle potentials is presented, based on YN interactions derived within chiral effective field theory up to next-to-next-to-leading ord…

nucl-th2025

Properties of hyperons in nuclear matter from chiral hyperon-nucleon interactions at next-to-next-to-leading order

Asanosuke Jinno, Johann Haidenbauer, Ulf-G. Meißner

The and single-particle potentials in infinite nuclear matter are analyzed within a recently established chiral hyperon-nucleon () interaction up to NLO in combin…

nucl-th2025

and potentials in dense matter based on chiral EFT: Bridging heavy-ion collisions, hypernuclei, and neutron stars

Asanosuke Jinno, Koichi Murase, Yasushi Nara +1

The and directed flows at are investigated to examine their sensitivity to the hyperon single-particle potentials. The single-particle po…

hep-ph2025

Poincaré covariant quantum molecular dynamics: a covariant description of a system of interacting wave packets

Yasushi Nara, Asanosuke Jinno, Koichi Murase

We present a new formulation for the mean-field propagation part of the relativistic quantum molecular dynamics, simulating an -body system of interacting Gaussian wave packets…

hep-ph2025

Optimal collision-energy range for realizing macroscopic high-baryon-density matter

Hidetoshi Taya, Asanosuke Jinno, Masakiyo Kitazawa +1

We investigate the volume and lifetime of the high baryon-density matter created in heavy-ion collisions and estimate the optimal collision-energy range to realize the high baryon-…