Second order chiral kinetic theory under gravity and antiparallel charge-energy flow

Abstract We derive the chiral kinetic theory under the presence of a gravitational Riemann curvature. It is well-known that in the chiral kinetic theory there inevitably appears a redundant ambiguous vector corresponding to the choice of the Lorentz frame. We reveal that on top of this conventional...

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Main Authors: Tomoya Hayata, Yoshimasa Hidaka, Kazuya Mameda
Format: Article
Language:English
Published: SpringerOpen 2021-05-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP05(2021)023
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spelling doaj-9849aaeb77ee47f59b24ee919944c2582021-05-09T11:07:10ZengSpringerOpenJournal of High Energy Physics1029-84792021-05-012021514310.1007/JHEP05(2021)023Second order chiral kinetic theory under gravity and antiparallel charge-energy flowTomoya Hayata0Yoshimasa Hidaka1Kazuya Mameda2Departments of Physics, Keio UniversityKEK Theory CenterTheoretical Research Division, Nishina Center, RIKENAbstract We derive the chiral kinetic theory under the presence of a gravitational Riemann curvature. It is well-known that in the chiral kinetic theory there inevitably appears a redundant ambiguous vector corresponding to the choice of the Lorentz frame. We reveal that on top of this conventional frame choosing vector, higher-order quantum correction to the chiral kinetic theory brings an additional degrees of freedom to specify the distribution function. Based on this framework, we derive new types of fermionic transport, that is, the charge current and energy-momentum tensor induced by the gravitational Riemann curvature. Such novel phenomena arise not only under genuine gravity but also in a (pseudo-)relativistic fluid, for which inhomogeneous vorticity or temperature are effectively represented by spacetime metric tensor. It is especially found that the charge and energy currents are antiparallelly induced by an inhomogeneous fluid vorticity (more generally, by the Ricci tensor R 0 i ), as a consequence of the spin-curvature coupling. We also briefly discuss possible applications to Weyl/Dirac semimetals and heavy-ion collision experiments.https://doi.org/10.1007/JHEP05(2021)023Anomalies in Field and String TheoriesThermal Field TheoryQuark-Gluon Plasma
collection DOAJ
language English
format Article
sources DOAJ
author Tomoya Hayata
Yoshimasa Hidaka
Kazuya Mameda
spellingShingle Tomoya Hayata
Yoshimasa Hidaka
Kazuya Mameda
Second order chiral kinetic theory under gravity and antiparallel charge-energy flow
Journal of High Energy Physics
Anomalies in Field and String Theories
Thermal Field Theory
Quark-Gluon Plasma
author_facet Tomoya Hayata
Yoshimasa Hidaka
Kazuya Mameda
author_sort Tomoya Hayata
title Second order chiral kinetic theory under gravity and antiparallel charge-energy flow
title_short Second order chiral kinetic theory under gravity and antiparallel charge-energy flow
title_full Second order chiral kinetic theory under gravity and antiparallel charge-energy flow
title_fullStr Second order chiral kinetic theory under gravity and antiparallel charge-energy flow
title_full_unstemmed Second order chiral kinetic theory under gravity and antiparallel charge-energy flow
title_sort second order chiral kinetic theory under gravity and antiparallel charge-energy flow
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2021-05-01
description Abstract We derive the chiral kinetic theory under the presence of a gravitational Riemann curvature. It is well-known that in the chiral kinetic theory there inevitably appears a redundant ambiguous vector corresponding to the choice of the Lorentz frame. We reveal that on top of this conventional frame choosing vector, higher-order quantum correction to the chiral kinetic theory brings an additional degrees of freedom to specify the distribution function. Based on this framework, we derive new types of fermionic transport, that is, the charge current and energy-momentum tensor induced by the gravitational Riemann curvature. Such novel phenomena arise not only under genuine gravity but also in a (pseudo-)relativistic fluid, for which inhomogeneous vorticity or temperature are effectively represented by spacetime metric tensor. It is especially found that the charge and energy currents are antiparallelly induced by an inhomogeneous fluid vorticity (more generally, by the Ricci tensor R 0 i ), as a consequence of the spin-curvature coupling. We also briefly discuss possible applications to Weyl/Dirac semimetals and heavy-ion collision experiments.
topic Anomalies in Field and String Theories
Thermal Field Theory
Quark-Gluon Plasma
url https://doi.org/10.1007/JHEP05(2021)023
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AT yoshimasahidaka secondorderchiralkinetictheoryundergravityandantiparallelchargeenergyflow
AT kazuyamameda secondorderchiralkinetictheoryundergravityandantiparallelchargeenergyflow
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