The Rayleigh Bubble in Quark Matter under a Strong Magnetic Field
arXiv:1911.04148 · doi:10.1103/PhysRevD.101.094005
Abstract
The transition of QGP from fluid-dynamical regime to freeze-out is accompanied by the onset of instabilities. In the present paper we investigate the impact of the magnetic field on the Rayleigh instability. We show that extremely strong field generated in peripheral heavy ion collisions has an insignificant influence on the Rayleigh bubble dynamics. Magnetic "friction" turns out to be much weaker than the viscous one.
12 pages, no figures: a completely revised v2 -- the title and the abstract are replaced, new equations with explanations are added, several insertions are made, the list of references is correspondingly enlarged
References in corpus (18)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- The equation of state in (2+1)-flavor QCD
- Quantum field theory in a magnetic field: From quantum chromodynamics to graphene and Dirac semimetals
- On the Strongly-Interacting Low-Viscosity Matter Created in Relativistic Nuclear Collisions
- The QCD equation of state in background magnetic fields
- Electrical conductivity and charge diffusion in thermal QCD from the lattice
- Bubble puzzles: From fundamentals to applications
- Phenomenological Review on Quark-Gluon Plasma: Concepts vs. Observations
- Electrical Conductivity of Quark-Gluon Plasma in Strong Magnetic Fields
- Instability of Boost-invariant hydrodynamics with a QCD inspired bulk viscosity
- Bulk Viscosity of Quark-Gluon Plasma in Strong Magnetic Fields
- Electromagnetic response of quark-gluon plasma in heavy-ion collisions
- The Magneto-Sono-Luminescence and its signatures in photon and dilepton production in heavy ion collisions
- The quark-gluon medium
- Electrical Conductivity of Dense Quark Matter with Fluctuations and Magnetic Field Included
- Shear viscosity of the quark matter
- Fluctuation sound absorption in quark matter
- Sound Attenuation in Quark Matter Due to Pairing Fluctuations