Pauli blocking effects on pair creation in strong electric field
arXiv:2306.12956 · doi:10.1103/PhysRevD.108.013002
Abstract
The process of electron-positron pair creation and oscillation in uniform electric field is studied, taking into account Pauli exclusion principle. Generally, we find that pair creation is suppressed, hence coherent oscillations occur on longer time scales. Considering pair creation in already existing electron-positron plasma we find that the dynamics depends on pair distribution function. We considered Fermi-Dirac distribution of pairs and found that for small temperatures pair creation is suppressed, while for small chemical potentials it increases: heating leads to enhancement of pair creation.
Accepted for publication in Physical Review D
References in corpus (7)
- Neutron star equilibrium configurations within a fully relativistic theory with strong, weak, electromagnetic, and gravitational interactions
- Thermalization of a nonequilibrium electron-positron-photon plasma
- On the Vlasov equation for Schwinger pair production in a time-dependent electric field
- Vacuum polarization and plasma oscillations
- Phase space evolution of pairs created in strong electric fields
- On the frequency of oscillations in the pair plasma generated by a strong electric field
- Full counting statistics of Schwinger pair production and annihilation
Cited by in corpus (4)
- Pair creation in hot electrosphere of compact astrophysical objects
- Pair creation from radial electromagnetic perturbation of a compact astrophysical object
- Pair luminosity and cooling of newborn strange star: unpaired quarks
- Stable dark matter from Pauli blocking in the degenerate fermion background with Quantum Field Theory