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Topological gluon configurations in quantum chromodynamics induce quark chirality imbalance in local domains, which can result in the chiral magnetic effect (CME)--an electric charge separation along a strong magnetic field.
Vacuum stability and vacuum excitation in a spin 0 field theory
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Possibility of spontaneous parity violation in hot QCD
Dmitri Kharzeev, R.D. Pisarski, and Michel H.G. Tytgat · 1998
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ZPC 1.0.1: A Parton cascade for ultrarelativistic heavy ion collisions
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A multiphase transport model for nuclear collisions at RHIC
Bin Zhang, C.M. Ko, Bao-An Li, and Zi-Wei Lin · 2000
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Partonic effects on the elliptic flow at RHIC
Zi-Wei Lin and C.M. Ko · 2002
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Parity violation in hot QCD: How to detect it
Sergei A. Voloshin · 2004
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Rho0 production and possible modification in Au+Au and p+p collisions at S(NN)**1/2 = 200-GeV
J. Adams et al · 2004
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A Multi-phase transport model for relativistic heavy ion collisions
Zi-Wei Lin, Che Ming Ko, Bao-An Li, Bin Zhang, and Subrata Pal · 2005
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Parity violation in hot QCD: Why it can happen, and how to look for it
Dmitri Kharzeev · 2006
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Charge separation induced by P-odd bubbles in QCD matter
D. Kharzeev and A. Zhitnitsky · 2007
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The Effects of topological charge change in heavy ion collisions: ’Event by event P and CP violation’
Dmitri E. Kharzeev, Larry D. McLerran, and Harmen J. Warringa · 2008
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The chiral magnetic effect
Kenji Fukushima, Dmitri E. Kharzeev, and Harmen J. Warringa · 2008
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Azimuthal Charged-Particle Correlations and Possible Local Strong Parity Violation
B.I. Abelev et al · 2009
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Systematic measurements of identified particle spectra in p p pp , d d +Au and Au+Au collisions from STAR
B.I. Abelev et al · 2009
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Charge Fluctuations from the Chiral Magnetic Effect in Nuclear Collisions
Berndt Muller and Andreas Schafer · 2010
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Effects of Cluster Particle Correlations on Local Parity Violation Observables
Fuqiang Wang · 2010
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Remarks on possible local parity violation in heavy ion collisions
Adam Bzdak, Volker Koch, and Jinfeng Liao · 2010
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On the Charge Separation Effect in Relativistic Heavy Ion Collisions
Jinfeng Liao, Volker Koch, and Adam Bzdak · 2010
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Observation of charge-dependent azimuthal correlations and possible local strong parity violation in heavy ion collisions
B.I. Abelev et al · 2010
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Testing the chiral magnetic effect with central U+U collisions
Sergei A. Voloshin · 2010
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Azimuthal correlations from transverse momentum conservation and possible local parity violation
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Charge conservation at energies available at the BNL Relativistic Heavy Ion Collider and contributions to local parity violation observables
Soren Schlichting and Scott Pratt · 2011
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Effects of Momentum Conservation and Flow on Angular Correlations at RHIC
Scott Pratt, Soeren Schlichting, and Sean Gavin · 2011
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Medium-modified Jets and Initial State Fluctuations as Sources of Charge Correlations Measured at RHIC
Hannah Petersen, Thorsten Renk, and Steffen A. Bass · 2011
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A New method for the experimental study of topological effects in the quark-gluon plasma
N.N. Ajitanand, Roy A. Lacey, A. Taranenko, and J.M. Alexander · 2011
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Chiral magnetic and vortical effects in high-energy nuclear collisions—A status report
D. E. Kharzeev, J. Liao, S. A. Voloshin, and G. Wang · 2016
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Observation of the chiral magnetic effect in ZrTe5
Qiang Li, Dmitri E. Kharzeev, Cheng Zhang, Yuan Huang, I. Pletikosic, A. V. Fedorov, R. D. Zhong, J. A. Schneeloch, G. D. Gu, and T. Valla · 2016
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Test the chiral magnetic effect with isobaric collisions
Wei-Tian Deng, Xu-Guang Huang, Guo-Liang Ma, and Gang Wang · 2016
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Origin of the mass splitting of elliptic anisotropy in a multiphase transport model
Hanlin Li, Liang He, Zi-Wei Lin, Denes Molnar, Fuqiang Wang, and Wei Xie · 2016
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Challenges in flow background removal in search for the chiral magnetic effect
Fuqiang Wang and Jie Zhao · 2017
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Quark Matter 2017 Conference, Chicago
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Effects of final state interactions on charge separation in relativistic heavy ion collisions
Guo-Liang Ma and Bin Zhang · 2011
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Charge-dependent Azimuthal Correlations in Relativistic Heavy-ion Collisions and Electromagnetic Effects
K.F. Liu · 2012
Cited alongside, same era.
Event-by-event background in estimates of the chiral magnetic effect
V.D. Toneev, V.P. Konchakovski, V. Voronyuk, E.L. Bratkovskaya, and W. Cassing · 2012
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Event-by-event fluctuations of magnetic and electric fields in heavy ion collisions
Adam Bzdak and Vladimir Skokov · 2012
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Event-by-event generation of electromagnetic fields in heavy-ion collisions
Wei-Tian Deng and Xu-Guang Huang · 2012
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Suppression of elliptic flow induced correlations in an observable of possible local parity violation
Adam Bzdak · 2012
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Collective flow and viscosity in relativistic heavy-ion collisions
Ulrich Heinz and Raimond Snellings · 2013
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Observation of charge-dependent azimuthal correlations in p p -Pb collisions and its implication for the search for the chiral magnetic effect
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Charge dependent particle correlations motivated by chiral magnetic effect and chiral vortical effect
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Separate measurements of physics background and the possible chiral magnetic effect in p+Au and d+Au collisions at RHIC
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To CME or not to CME? Implications of p+Pb measurements of the chiral magnetic effect in heavy ion collisions
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Origin of the mass splitting of azimuthal anisotropies in a multiphase transport model
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Status of the chiral magnetic effect and collisions of isobars
Volker Koch, Soeren Schlichting, Vladimir Skokov, Paul Sorensen, Jim Thomas, Sergei Voloshin, Gang Wang, and Ho-Ung Yee · 2017
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Constraints on the chiral magnetic effect using charge-dependent azimuthal correlations in p Pb p\mathrm{Pb} and PbPb collisions at the CERN Large Hadron Collider
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Event-shape-engineering study of charge separation in heavy-ion collisions
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Constraining the magnitude of the Chiral Magnetic Effect with Event Shape Engineering in Pb-Pb collisions at s NN \sqrt{s_{\mathrm{NN}}} = 2.76 TeV
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Importance of isobar density distributions on the chiral magnetic effect search
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Anomalous Chiral Transport in Heavy Ion Collisions from Anomalous-Viscous Fluid Dynamics
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A novel invariant mass method to isolate resonance backgrounds from the chiral magnetic effect
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