Chiral hydrodynamics in strong external magnetic fields
Entity
UAM. Departamento de Física TeóricaPublisher
SpringerDate
2021-04-09Citation
10.1007/JHEP04(2021)078
Journal of High Energy Physics 4 (2021): 78
ISSN
1126-6708 (print); 1029-8479 (online)DOI
10.1007/JHEP04(2021)078Project
Gobierno de España. SEV-2016-0597; Gobierno de España. PGC2018-095976-B-C21Editor's Version
https://doi.org/10.1007/JHEP04(2021)078Subjects
Ionic Collisions; Magnetic Effects; Chiral; FísicaRights
© 2021, The Author(s)Abstract
We construct the general hydrodynamic description of (3+1)-dimensional chiral charged (quantum) fluids subject to a strong external magnetic field with effective field theory methods. We determine the constitutive equations for the energy-momentum tensor and the axial charge current, in part from a generating functional. Furthermore, we derive the Kubo formulas which relate two-point functions of the energy-momentum tensor and charge current to 27 transport coefficients: 8 independent thermodynamic, 4 independent non-dissipative hydrodynamic, and 10 independent dissipative hydrodynamic transport coefficients. Five Onsager relations render 5 more transport coefficients dependent. We uncover four novel transport effects, which are encoded in what we call the shear-induced conductivity, the two expansion-induced longitudinal conductivities and the shear-induced Hall conductivity. Remarkably, the shear-induced Hall conductivity constitutes a novel non-dissipative transport effect. As a demonstration, we compute all transport coefficients explicitly in a strongly coupled quantum fluid via holography
Files in this item
Google Scholar:Ammon, Martin
-
Grieninger, Sebastian
-
Hernandez, Juan
-
Kaminski, Matthias
-
Koirala, Roshan
-
Leiber, Julian
-
Wu, Jackson
This item appears in the following Collection(s)
Related items
Showing items related by title, author, creator and subject.