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Measurement of the Chiral Magnetic Effect (CME) has been a popular topic of high-energy nuclear physics in the last decade. The flow correlation $\gamma$ between charged hadron pairs of the same and opposite charges and their difference…

Nuclear Theory · Physics 2025-03-20 Yu Wang , Hua Pei

The scaling properties of the $\Delta\gamma$ correlator, inferred from the Anomalous Viscous Fluid Dynamics (AVFD) model, are used to investigate a possible chiral-magnetically-driven (CME) charge separation in $p$+Au, $d$+Au, Ru+Ru, Zr+Zr,…

Nuclear Experiment · Physics 2022-06-23 Roy A. Lacey , Niseem Magdy

In this paper a pair of observables are proposed as alternative ways, by examining the fluctuation of net momentum-ordering of charged pairs, to study the charge separation induced by the Chiral Magnetic Effect (CME) in relativistic heavy…

Nuclear Experiment · Physics 2020-06-24 A. H. Tang

An interpretation of the charge dependent correlations sensitive to the Chiral Magnetic Effect (CME) -- the separation of the electric charges along the system magnetic field (across the reaction plane) -- is ambiguous due to a possible…

Nuclear Experiment · Physics 2018-12-05 Sergei A. Voloshin

The electron-electron correlations in a many-electron (Ne = 1, 2,..., 5) quantum dot confined by a parabolic potential is investigated in the presence of a single magnetic ion and a perpendicular magnetic field. We obtained the energy…

Strongly Correlated Electrons · Physics 2008-11-19 Nga T. T. Nguyen , F. M. Peeters

This short overview includes recent results from the ALICE Collaboration on anisotropic flow of charged and identified particles in sqrt(sNN) = 2.76 TeV Pb-Pb collisions. We also discuss charge dependent and event plane dependent azimuthal…

Nuclear Experiment · Physics 2015-06-12 Sergei A. Voloshin

The small collision systems like p+p and p+A collisions have shown new features like A+A collisions in the relativistic regime. These new aspects in small systems which have altered our research and understanding on the two-particle…

Nuclear Experiment · Physics 2023-09-06 Debasish Das

In the framework of a multi-phase transport model (AMPT) with both partonic and hadronic interactions, azimuthal correlations between trigger particles and associated scattering particles have been studied by the mixing-event technique. The…

Nuclear Theory · Physics 2008-11-26 G. L. Ma , S. Zhang , Y. G. Ma , H. Z. Huang , X. Z. Cai , J. H. Chen , Z. J. He , J. L. Long , W. Q. Shen , X. H. Shi , J. X. Zuo

The (3+1)D relativistic hydrodynamics with chiral anomaly is used to obtain a quantitative description of the chiral magnetic effect (CME) in heavy-ion collisions. We find that the charge-dependent hadron azimuthal correlations are…

High Energy Physics - Phenomenology · Physics 2015-08-28 Yuji Hirono , Tetsufumi Hirano , Dmitri E. Kharzeev

We compute the electromagnetic field created by an ultrarelativistic charged particle in vacuum at distances comparable to the particle Compton wavelength. The wave function of the particle is governed by the Klein-Gordon equation, for a…

Nuclear Theory · Physics 2018-03-14 Balthazar Peroutka , Kirill Tuchin

The chiral magnetic effect in heavy-ion collisions predicts a charge separation signal along a magnetic field, which indicates local $P$ and $CP$ violations in the quark-gluon plasma. We report measurements of electric charge separation…

Nuclear Experiment · Physics 2025-06-03 The STAR Collaboration

Three-dimensional electron phase space holes are shown to be positive charges on the plasma background which produce a radial electric field and force the trapped electron component into an azimuthal drift. In this way electron holes…

Space Physics · Physics 2012-04-20 R. A. Treumann , W. Baumjohann

Chiral Magnetic Effect (CME) is a phenomenon in which electric charge is separated by a strong magnetic field from local domains of chirality imbalance in quantum chromodynamics. The CME-sensitive, azimuthal correlator difference…

High Energy Physics - Phenomenology · Physics 2025-03-05 Han-Sheng Li , Yicheng Feng , Fuqiang Wang

Medium effects on charged-particle production are studied using three analysis techniques. We find angular collinearity and number correlations on $p_t$ at moderate $p_t<3$ GeV/$c$. In this $p_t$ range abundant multiplicities enable…

Nuclear Experiment · Physics 2007-05-23 Mikhail Kopytine

We present measurements of net charge fluctuations in $Au + Au$ collisions at $\sqrt{s_{NN}} = $ 19.6, 62.4, 130, and 200 GeV, $Cu + Cu$ collisions at $\sqrt{s_{NN}} = $ 62.4, 200 GeV, and $p + p$ collisions at $\sqrt{s} = $ 200 GeV using…

Nuclear Experiment · Physics 2009-03-04 B. I. Abelev , M. M. Aggarwal , Z. Ahammed , B. D. Anderson , D. Arkhipkin , G. S. Averichev , Y. Bai , J. Balewski , O. Barannikova , L. S. Barnby , J. Baudot , S. Baumgart , D. R. Beavis , R. Bellwied , F. Benedosso , R. R. Betts , S. Bhardwaj , A. Bhasin , A. K. Bhati , H. Bichsel , J. Bielcik , J. Bielcikova , B. Biritz , L. C. Bland , M. Bombara , B. E. Bonner , M. Botje , J. Bouchet , E. Braidot , A. V. Brandin , S. Bueltmann , T. P. Burton , M. Bystersky , X. Z. Cai , H. Caines , M. Calderón de la Barca Sánchez , J. Callner , O. Catu , D. Cebra , R. Cendejas , M. C. Cervantes , Z. Chajecki , P. Chaloupka , S. Chattopadhyay , H. F. Chen , J. H. Chen , J. Y. Chen , J. Cheng , M. Cherney , A. Chikanian , K. E. Choi , W. Christie , S. U. Chung , R. F. Clarke , M. J. M. Codrington , J. P. Coffin , T. M. Cormier , M. R. Cosentino , J. G. Cramer , H. J. Crawford , D. Das , S. Dash , M. Daugherity , T. G. Dedovich , M. DePhillips , A. A. Derevschikov , R. Derradi de Souza , L. Didenko , P. Djawotho , S. M. Dogra , X. Dong , J. L. Drachenberg , J. E. Draper , F. Du , J. C. Dunlop , M. R. Dutta Mazumdar , W. R. Edwards , L. G. Efimov , E. Elhalhuli , M. Elnimr , V. Emelianov , J. Engelage , G. Eppley , B. Erazmus , M. Estienne , L. Eun , P. Fachini , R. Fatemi , J. Fedorisin , A. Feng , P. Filip , E. Finch , V. Fine , Y. Fisyak , C. A. Gagliardi , L. Gaillard , D. R. Gangadharan , M. S. Ganti , E. Garcia-Solis , V. Ghazikhanian , P. Ghosh , Y. N. Gorbunov , A. Gordon , O. Grebenyuk , D. Grosnick , B. Grube , S. M. Guertin , K. S. F. F. Guimaraes , A. Gupta , N. Gupta , W. Guryn , B. Haag , T. J. Hallman , A. Hamed , J. W. Harris , W. He , M. Heinz , S. Heppelmann , B. Hippolyte , A. Hirsch , A. M. Hoffman , G. W. Hoffmann , D. J. Hofman , R. S. Hollis , H. Z. Huang , T. J. Humanic , G. Igo , A. Iordanova , P. Jacobs , W. W. Jacobs , P. Jakl , F. Jin , P. G. Jones , E. G. Judd , S. Kabana , K. Kajimoto , K. Kang , J. Kapitan , M. Kaplan , D. Keane , A. Kechechyan , D. Kettler , V. Yu. Khodyrev , J. Kiryluk , A. Kisiel , S. R. Klein , A. G. Knospe , A. Kocoloski , D. D. Koetke , M. Kopytine , L. Kotchenda , V. Kouchpil , P. Kravtsov , V. I. Kravtsov , K. Krueger , C. Kuhn , L. Kumar , P. Kurnadi , M. A. C. Lamont , J. M. Landgraf , S. LaPointe , J. Lauret , A. Lebedev , R. Lednicky , C-H. Lee , M. J. LeVine , C. Li , Y. Li , G. Lin , X. Lin , S. J. Lindenbaum , M. A. Lisa , F. Liu , J. Liu , L. Liu , T. Ljubicic , W. J. Llope , R. S. Longacre , W. A. Love , Y. Lu , T. Ludlam , D. Lynn , G. L. Ma , Y. G. Ma , D. P. Mahapatra , R. Majka , L. K. Mangotra , R. Manweiler , S. Margetis , C. Markert , H. S. Matis , Yu. A. Matulenko , T. S. McShane , A. Meschanin , J. Millane , M. L. Miller , N. G. Minaev , S. Mioduszewski , A. Mischke , J. Mitchell , B. Mohanty , D. A. Morozov , M. G. Munhoz , B. K. Nandi , C. Nattrass , T. K. Nayak , J. M. Nelson , C. Nepali , P. K. Netrakanti , M. J. Ng , L. V. Nogach , S. B. Nurushev , G. Odyniec , A. Ogawa , H. Okada , V. Okorokov , D. Olson , M. Pachr , S. K. Pal , Y. Panebratsev , T. Pawlak , T. Peitzmann , V. Perevoztchikov , C. Perkins , W. Peryt , S. C. Phatak , M. Planinic , J. Pluta , N. Poljak , N. Porile , A. M. Poskanzer , B. V. K. S. Potukuchi , D. Prindle , C. Pruneau , N. K. Pruthi , J. Putschke , I. A. Qattan , R. Raniwala , S. Raniwala , R. L. Ray , A. Ridiger , H. G. Ritter , J. B. Roberts , O. V. Rogachevskiy , J. L. Romero , A. Rose , C. Roy , L. Ruan , M. J. Russcher , V. Rykov , R. Sahoo , I. Sakrejda , T. Sakuma , S. Salur , J. Sandweiss , M. Sarsour , J. Schambach , R. P. Scharenberg , N. Schmitz , J. Seger , I. Selyuzhenkov , P. Seyboth , A. Shabetai , E. Shahaliev , M. Shao , M. Sharma , S. S. Shi , X-H. Shi , E. P. Sichtermann , F. Simon , R. N. Singaraju , M. J. Skoby , N. Smirnov , R. Snellings , P. Sorensen , J. Sowinski , H. M. Spinka , B. Srivastava , A. Stadnik , T. D. S. Stanislaus , D. Staszak , M. Strikhanov , B. Stringfellow , A. A. P. Suaide , M. C. Suarez , N. L. Subba , M. Sumbera , X. M. Sun , Y. Sun , Z. Sun , B. Surrow , T. J. M. Symons , A. Szanto de Toledo , J. Takahashi , A. H. Tang , Z. Tang , T. Tarnowsky , D. Thein , J. H. Thomas , J. Tian , A. R. Timmins , S. Timoshenko , M. Tokarev , T. A. Trainor , V. N. Tram , A. L. Trattner , S. Trentalange , R. E. Tribble , O. D. Tsai , J. Ulery , T. Ullrich , D. G. Underwood , G. Van Buren , N. van der Kolk , M. van Leeuwen , A. M. Vander Molen , R. Varma , G. M. S. Vasconcelos , I. M. Vasilevski , A. N. Vasiliev , F. Videbaek , S. E. Vigdor , Y. P. Viyogi , S. Vokal , S. A. Voloshin , M. Wada , W. T. Waggoner , F. Wang , G. Wang , J. S. Wang , Q. Wang , X. Wang , X. L. Wang , Y. Wang , J. C. Webb , G. D. Westfall , C. Whitten , H. Wieman , S. W. Wissink , R. Witt , J. Wu , Y. Wu , N. Xu , Q. H. Xu , Y. Xu , Z. Xu , P. Yepes , I-K. Yoo , Q. Yue , M. Zawisza , H. Zbroszczyk , W. Zhan , H. Zhang , S. Zhang , W. M. Zhang , Y. Zhang , Z. P. Zhang , Y. Zhao , C. Zhong , J. Zhou , R. Zoulkarneev , Y. Zoulkarneeva , J. X. Zuo

Under the approximate chiral symmetry restoration, quark interactions with topological gluon fields in quantum chromodynamics can induce chirality imbalance and parity violation in local domains. An electric charge separation ({\sc cs})…

Nuclear Theory · Physics 2018-08-08 Hao-jie Xu , Xiaobao Wang , Hanlin Li , Jie Zhao , Zi-Wei Lin , Caiwan Shen , Fuqiang Wang

Results on the study of localized fluctuations in the multiplicity of charged particles and photons produce 158A GeV/c Pb+Pb collisions are presented for four different centrality classes. The charged versus neutral particle multiplicity…

Nuclear Experiment · Physics 2012-08-27 WA98 Collaboration

In this work, we study electrical conductivity and Hall conductivity in the presence of electromagnetic field using Relativistic Boltzmann Transport Equation with Relaxation Time Approximation. We evaluate these transport coefficients for a…

High Energy Physics - Phenomenology · Physics 2021-02-04 Bhaswar Chatterjee , Rutuparna Rath , Golam Sarwar , Raghunath Sahoo

The article presents a study aimed at probing the dependence of the Chiral Magnetic Effect (CME) on the magnetic field strength using the Anomalous Viscous Fluid Dynamics (AVFD) model in Pb--Pb at LHC energies. The results demonstrate the…

Nuclear Theory · Physics 2024-02-13 Panos Christakoglou

Particle acceleration consequences from fluctuating electric fields superposed on an X-type magnetic field in collisionless solar plasma are studied. Such a system is chosen to mimic generic features of dynamic reconnection, or the…

Astrophysics · Physics 2009-11-13 P. Petkaki , A. L. MacKinnon
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