High-energy Heavy-ion collisions can generate extremely hot quark-gluon matter and also extremely strong magnetic fields and fluid vorticity. Once coupled to chiral anomaly, the magnetic fields and fluid vorticity can induce a variety of novel transport phenomena, including the chiral magnetic effect, chiral vortical effect, etc. Some of them require the environmental violation of parity and thus provide a means to test the possible parity violation in hot strongly interacting matter. We will discuss the underlying mechanism and implications of these anomalous chiral transports in heavy-ion collisions
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
We provide a phenomenological analysis of present experimental searches for local parity violation m...
An extremely strong magnetic field (as strong as 1015 T) is created in the off-central heavy-ion col...
High-energy Heavy-ion collisions can generate extremely hot quark-gluon matter and also extremely st...
Chiral anomaly is a fundamental aspect of quantum theories with chiral fermions. How such microscopi...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
Quark-Gluon plasma produced in heavy ion collisions allows for the study of exotic physical effects,...
At the earliest times after a heavy-ion collision, the magnetic field created by the spectator nucle...
At the earliest times after a heavy-ion collision, the magnetic field created by the spectator nucle...
Chiral anomaly induces a new kind of macroscopic quantum behavior in relativistic magnetohydrodynami...
Quantum Chromodynamics permits the formation of charge conjugation parity violating domains inside t...
Various novel transport phenomena in chiral systems result from the interplay of quantum anomalies w...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
AbstractMatter with chiral fermions is microscopically described by theory with quantum anomaly and ...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
We provide a phenomenological analysis of present experimental searches for local parity violation m...
An extremely strong magnetic field (as strong as 1015 T) is created in the off-central heavy-ion col...
High-energy Heavy-ion collisions can generate extremely hot quark-gluon matter and also extremely st...
Chiral anomaly is a fundamental aspect of quantum theories with chiral fermions. How such microscopi...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
Quark-Gluon plasma produced in heavy ion collisions allows for the study of exotic physical effects,...
At the earliest times after a heavy-ion collision, the magnetic field created by the spectator nucle...
At the earliest times after a heavy-ion collision, the magnetic field created by the spectator nucle...
Chiral anomaly induces a new kind of macroscopic quantum behavior in relativistic magnetohydrodynami...
Quantum Chromodynamics permits the formation of charge conjugation parity violating domains inside t...
Various novel transport phenomena in chiral systems result from the interplay of quantum anomalies w...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
AbstractMatter with chiral fermions is microscopically described by theory with quantum anomaly and ...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
We provide a phenomenological analysis of present experimental searches for local parity violation m...
An extremely strong magnetic field (as strong as 1015 T) is created in the off-central heavy-ion col...