A comment on generalized Schwinger effect
arXiv:1712.06621 · doi:10.1140/epjc/s10052-018-6310-2
Abstract
A spatially homogeneous, time-dependent, electric field can produce charged particle pairs from the vacuum. When the electric field is constant, the mean number of pairs which are produced depends on the electric field and the coupling constant in a non-analytic manner, showing that this result cannot be obtained from the standard perturbation theory of quantum electrodynamics. When the electric field varies with time and vanishes asymptotically, the result may depend on the coupling constant either analytically or non-analytically. We investigate the nature of this dependence in detail. We show that the dependence of particle production on coupling constant is non-analytic for a class of time-dependent electric fields which vanish asymptotically when a specific condition is satisfied. We also demonstrate that for another class of electric fields, which vary rapidly, the dependence of particle production on coupling constant is analytic.
published version
References in corpus (7)
- Dynamically assisted Schwinger mechanism
- Worldline Instantons II: The Fluctuation Prefactor
- Improved Approximations for Fermion Pair Production in Inhomogeneous Electric Fields
- Inflationary Perturbations: the Cosmological Schwinger Effect
- Effective Action of QED in Electric Field Backgrounds
- A quantum peek inside the black hole event horizon
- Black hole kinematics: the "in"-vacuum energy density and flux for different observers