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Title: Charge redistribution from novel magneto-vorticity coupling in anomalous hydrodynamics

Journal Article · · Nuclear Physics. A
 [1];  [2]
  1. Fudan Univ., Shanghai (China)
  2. Massachusetts Inst. of Technology (MIT), Cambridge, MA (United States)

We discuss new transport phenomena in the presence of both a strong magnetic field and a vortex field. Their interplay induces a charge distribution and a current along the magnetic field. We show that the associated transport coefficients can be obtained from a simple analysis of the single-particle distribution functions and also from the Kubo formula calculation. With this being said, the consistent results from these analyses suggest that the transport coefficients are tied to the chiral anomaly in the (1+1) dimension because of the dimensional reduction in the lowest Landau levels.

Research Organization:
Massachusetts Inst. of Technology (MIT), Cambridge, MA (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Nuclear Physics (NP)
Grant/Contract Number:
SC0011090
OSTI ID:
1501432
Journal Information:
Nuclear Physics. A, Vol. 967, Issue C; ISSN 0375-9474
Publisher:
ElsevierCopyright Statement
Country of Publication:
United States
Language:
English

References (8)

The Chiral Magnetic Effect and anomaly-induced transport journal March 2014
Chiral magnetic and vortical effects in high-energy nuclear collisions—A status report journal May 2016
Electromagnetic fields and anomalous transports in heavy-ion collisions—a pedagogical review journal June 2016
Novel quantum phenomena induced by strong magnetic fields in heavy-ion collisions journal January 2017
Charge Redistribution from Anomalous Magnetovorticity Coupling journal October 2016
Hydrodynamics with Triangle Anomalies journal November 2009
Relativistic distribution function for particles with spin at local thermodynamical equilibrium journal November 2013
Heavy quark diffusion in strong magnetic fields at weak coupling and implications for elliptic flow journal April 2016

Figures / Tables (3)


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