Extreme matter in electromagnetic fields and rotation
arXiv:1812.08886 · doi:10.1016/j.ppnp.2019.04.001
Abstract
We look over recent developments on our understanding about relativistic matter under external electromagnetic fields and mechanical rotation. I review various calculational approaches for concrete physics problems, putting my special emphasis on generality of the method and the consequence, rather than going into phenomenological applications in a specific field of physics. The topics covered in this article include static problems with magnetic fields, dynamical problems with electromagnetic fields, and phenomena induced by rotation.
48 pages; major improvements for readability, more explanations, expanded introduction and summary with typos fixed
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- Foundations and Applications of Quantum Kinetic Theory
- Spin polarization dynamics in the Gubser-expanding background
- Signatures of Chiral Magnetic Effect in the Collisions of Isobars
- Phase diagram of QCD in a magnetic background
- Strong-Field Physics in QED and QCD: From Fundamentals to Applications
- Signatures of clustering in O by using a multiphase transport model
- Spin Hydrodynamic Generation in the Charged Subatomic Swirl
- Hyperon Polarization from the Vortical Fluid in Low Energy Nuclear Collisions
- Implications of the isobar run results for chiral magnetic effect in heavy ion collisions
- Causality and stability in relativistic viscous non-resistive magneto-fluid dynamics
- Anomalous Casimir effect in axion electrodynamics
- Dynamical magnetic fields in heavy-ion collisions
- Lepton pair photoproduction in peripheral relativistic heavy-ion collisions
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- Resummation for the Field-theoretical Derivation of the Negative Magnetoresistance
- Electric conductivity with the magnetic field and the chiral anomaly in a holographic QCD model
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- Chiral magnetic response to arbitrary axial imbalance
- Wigner function formalism and the evolution of thermodynamic quantities in an expanding magnetized plasma
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- Chiral vortical catalysis
- Mode Decomposed Chiral Magnetic Effect and Rotating Fermions
- Photoproduction of in peripheral isobar collisions
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- Accessing Topological Fluctuations of Gauge Fields with Chiral Magnetic Effect
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