Bosonization of Strong-Field Pair Plasma
arXiv:1811.08422 · doi:10.1088/1475-7516/2019/05/002
Abstract
A theory of magnetized pair plasma is obtained by the method of bosonization on the lowest Landau level. Force-free electrodynamics emerges in the strong-field limit. Potential applications to neutron star magnetospheres are suggested.
matches published version
References in corpus (6)
- The Chiral Magnetic Effect
- Chiral Magnetic Wave
- Ab-initio pulsar magnetosphere: three-dimensional particle-in-cell simulations of oblique pulsars
- Electrodynamics of axisymmetric pulsar magnetosphere with electron-positron discharge: a numerical experiment
- Inclined Pulsar Magnetospheres in General Relativity: Polar Caps for the Dipole, Quadrudipole and Beyond
- Magnetoluminescence
Cited by in corpus (5)
- Comments on magnetic black holes
- Effective description of non-equilibrium currents in cold magnetized plasma
- Towards traversable wormholes from force-free plasmas
- Relativistic Guiding-Center Motion: Action Principle, Kinetic Theory, and Hydrodynamics
- Schwinger effect with backreaction in 1+1D massive QED with a strong external field