From the 1 of 6 linked papers with an AI index.
6 papers
Quantum simulation of bottomonium dynamics in the quark-gluon plasma via the Lindblad equation
Linyuan Wei, Jin Hu, Anping Huang +2
Quantum computing provides a powerful framework for simulating real-time dynamics in open quantum systems, offering key advantages for modeling heavy-quarkonium transport in high-e…
Investigating spin alignment in heavy-ion collisions within a two-component transport model
Yida Yang, Anping Huang, Baoyi Chen
The paper studies how J/ψ mesons become spin‑aligned in relativistic heavy‑ion collisions using a two‑component Boltzmann transport model that combines primordial production and co…
Effects of event-by-event hydrodynamic fluctuations on bottomonium dynamics in Pb--Pb collisions at TeV
Jiamin Liu, Yiyun Tang, Linyuan Wei +1
We investigate the effects of event-by-event hydrodynamic fluctuations on bottomonium nuclear modification factors and elliptic flow in Pb--Pb collisions at Te…
Unified Extraction of In-Medium Heavy Quark Potentials from RHIC to LHC Energies via Deep Learning
Jiamin Liu, Kai Zhou, Baoyi Chen
We use deep learning under Bayesian perspective to quantitatively extract the in-medium heavy quark (HQ) potential from bottomonium nuclear modification factors () measured…
Dynamical equation for quark spin polarization in the rotating medium
Tianyang Li, Yunfei Fan, Anping Huang +1
In non-central relativistic heavy-ion collisions, the produced quark-gluon plasma (QGP) behaves approximately as a rotating fluid due to the system's initial angular momentum. In t…
The Gilbert Damping Factor of Heavy Quark Spin Polarization in the Magnetic Field
Tianyang Li, Anping Huang, Baoyi Chen
We employ the linear response theory to calculate the polarization rate of heavy quark spin in the presence of a strong magnetic field and the hot QCD matter, both of which are sim…