10 papers
Experimental review on the chiral magnetic effect in relativistic heavy ion collisions
Wei Li, Qiye Shou, Fuqiang Wang
The chiral magnetic effect (CME) refers to a predicted phenomena in quantum chromodynamics that manifests as a charge separation along an external magnetic field, driven by an imba…
Investigating event-shape methods in the search for the chiral magnetic effect in relativistic heavy ion collisions
Han-Sheng Li, Yicheng Feng, Fuqiang Wang
The Chiral Magnetic Effect (CME) is a phenomenon in which electric charge is separated by a strong magnetic field from local domains of chirality imbalance and parity violation in…
Exploring Data-Driven Corrections for -Meson Global Spin Alignment Measurements
C. W. Robertson, Yicheng Feng, Fuqiang Wang
Non-central heavy ion collisions generate large orbital angular momentum (OAM), providing opportunities to study spin phenomena such as the global spin alignment of vector mesons.…
Experimental Search for the Chiral Magnetic Effect in Relativistic Heavy-Ion Collisions: A Perspective
Yicheng Feng, Sergei A. Voloshin, Fuqiang Wang
The chiral magnetic effect (CME) refers to generation of the electric current along a magnetic field in a chirally imbalanced system of quarks. The latter is predicted by quantum c…
Energy-Embedded Neural Solvers for One-Dimensional Quantum Systems
Yi-Qiang Wu, Xuan Liu, Hanlin Li +1
Physics-informed neural networks (PINN) have been widely used in computational physics to solve partial differential equations (PDEs). In this study, we propose an energy-embedding…
A "breathing'' octupole Pb nucleus: resolving the elliptical-to-triangular azimuthal anisotropy puzzle in ultracentral relativistic heavy ion collisions
Hao-jie Xu, Duoduo Xu, Shujun Zhao +3
Relativistic heavy ion collisions provide a unique opportunity to probe the nuclear structure by taking an instantaneous snapshot of the colliding nuclei and converting it into mom…