We study the influence of the chiral phase transition on the chiral magnetic effect. The azimuthal charge-particle correlations as functions of the temperature are calculated. It is found that there is a pronounced cusp in the correlations as the temperature reaches its critical value for the QCD phase transition. It is predicted that there will be a drastic suppression of the charge-particle correlations as the collision energy in RHIC decreases to below a critical value. We show then the azimuthal charge-particle correlations can be the signal to identify the occurrence of the QCD phase transitions in RHIC energy scan experiments.Physics, MultidisciplinarySCI(E)中国科技核心期刊(ISTIC)中国科学引文数据库(CSCD)2ARTICLE1123-1275
Charge-dependent azimuthal correlations of same-and opposite-sign pairs with respect to the second-a...
Matter with chiral fermions is microscopically described by theory with quantum anomaly and macrosco...
In a system composed by quasi-free fermions, initially chirally symmetric, it is possible to show th...
In the early stage of relativistic heavy-ion collisions, a strong magnetic field can be generated. T...
The exciting possibility of direct observation of QCD instantons in heavy-ion collisions has re-cent...
We provide a phenomenological analysis of present experimental searches for local parity violation m...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
Metastable domains of fluctuating topological charges can change the chirality of quarks and induce ...
The chiral magnetic effect (CME) refers to charge separation along a strong magnetic field due to im...
Further distribution of this work must maintain attribution to the author(s) and the published artic...
Searches for the chiral magnetic effect (CME) using charge-dependent azimuthal correlations with res...
We present STAR measurements of the charge-dependent three-particle correlator gamma(a,b) = /v(2){2}...
Charge-dependent azimuthal correlations of same- and opposite-sign pairs with respect to the second-...
Searches for the chiral magnetic effect (CME) using charge-dependent azimuthal correlations with res...
Charge-dependent azimuthal correlations of same- and opposite-sign pairs with respect to the second-...
Charge-dependent azimuthal correlations of same-and opposite-sign pairs with respect to the second-a...
Matter with chiral fermions is microscopically described by theory with quantum anomaly and macrosco...
In a system composed by quasi-free fermions, initially chirally symmetric, it is possible to show th...
In the early stage of relativistic heavy-ion collisions, a strong magnetic field can be generated. T...
The exciting possibility of direct observation of QCD instantons in heavy-ion collisions has re-cent...
We provide a phenomenological analysis of present experimental searches for local parity violation m...
The quark-gluon plasma created in heavy ion collisions is an exotic state of matter in which many un...
Metastable domains of fluctuating topological charges can change the chirality of quarks and induce ...
The chiral magnetic effect (CME) refers to charge separation along a strong magnetic field due to im...
Further distribution of this work must maintain attribution to the author(s) and the published artic...
Searches for the chiral magnetic effect (CME) using charge-dependent azimuthal correlations with res...
We present STAR measurements of the charge-dependent three-particle correlator gamma(a,b) = /v(2){2}...
Charge-dependent azimuthal correlations of same- and opposite-sign pairs with respect to the second-...
Searches for the chiral magnetic effect (CME) using charge-dependent azimuthal correlations with res...
Charge-dependent azimuthal correlations of same- and opposite-sign pairs with respect to the second-...
Charge-dependent azimuthal correlations of same-and opposite-sign pairs with respect to the second-a...
Matter with chiral fermions is microscopically described by theory with quantum anomaly and macrosco...
In a system composed by quasi-free fermions, initially chirally symmetric, it is possible to show th...