Fluctuations of conserved quantities are predicted to be sensitive observables to probe the QCD phase transition and critical point in heavy-ion collisions. Experimentally, various cumulants (up to fourth order) of net-proton (proxy for net-baryon (B)), net-kaon (proxy for net-strangeness (S)), and net-charge (Q) multiplicity distributions of Au+Au collisions at √sNN = 7.7 ~ 200 GeV has been measured by the STAR and PHENIX experiments from the first phase of beam energy scan program at the Relativistic Heavy Ion Collider. In this paper, i will discuss those experimental results and the corresponding physics implications
Dynamical fluctuations of the globally conserved quantities in heavy ion collision such as baryon nu...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Fluctuations of conserved quantities are predicted to be sensitive observables to probe the QCD phas...
QCD critical point is a landmark region in the QCD phase diagram outlined by temperature as a functi...
The RHIC Beam Energy Scan focuses on mapping the QCD phase diagram and pinpointing the loca- tion of...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
The main goal of high-energy heavy-ion collisions has been to understand Quantum Chromo Dynamics (QC...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Dynamical fluctuations of the globally conserved quantities in heavy ion collision such as baryon nu...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Fluctuations of conserved quantities are predicted to be sensitive observables to probe the QCD phas...
QCD critical point is a landmark region in the QCD phase diagram outlined by temperature as a functi...
The RHIC Beam Energy Scan focuses on mapping the QCD phase diagram and pinpointing the loca- tion of...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
The main goal of high-energy heavy-ion collisions has been to understand Quantum Chromo Dynamics (QC...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
Dynamical fluctuations of the globally conserved quantities in heavy ion collision such as baryon nu...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...
A search for the quantum chromodynamics (QCD) critical point was performed by the STAR experiment at...