Pair production from the vacuum by a weakly inhomogeneous space-dependent electric potential step
arXiv:1903.05925 · doi:10.1103/PhysRevD.99.116014
Abstract
There exists a clear physical motivation for theoretical studies of the vacuum instability related to the production of electron-positron pairs from a vacuum due to strong external electric fields. Various nonperturbative (with respect to the external fields) calculation methods were developed. Some of these methods are based on possible exact solutions of the Dirac equation. Unfortunately, there are only few cases when such solutions are known. Recently, an approximate but still nonperturbative approach to treat the vacuum instability caused by slowly varying -electric potential steps (time dependent external fields that vanish as ), which does not depend on the existence of the corresponding exact solutions, was formulated in Ref. [S. P. Gavrilov, D. M. Gitman, Phys. Rev. D \textbf{95}, 076013 (2017)]. Here, we present an approximate calculation method to treat nonperturbatively the vacuum instability in arbitrary weakly inhomogeneous -electric potential steps (time-independent electric fields of a constant direction that are concentrated in restricted space areas, which means that the fields vanish as ) in the absence of the corresponding exact solutions. Defining the weakly inhomogeneous regime in general terms, we demonstrate the universal character of the vacuum instability. This universality is associated with a large density of states excited from the vacuum by the electric field. Such a density appears in our approach as a large parameter. We derive universal representations for the total number and current density of the created particles. Relations of these representations with a locally constant field approximation for Schwinger's effective action are found.
17 pages; misprints corrected, misprints corrected, the title slightly changed during review process; version accepted for publication
References in corpus (9)
- Cold Quark Matter
- Worldline Instantons II: The Fluctuation Prefactor
- The Schwinger mechanism and graphene
- Multidimensional Worldline Instantons
- Dirac fermions in strong electric field and quantum transport in graphene
- Properties of High-Density Matter in Neutron Stars
- Universal Charge-Radius Relation for Subatomic and Astrophysical Compact Objects
- Probing the quantum vacuum with ultra intense laser pulses
- Particle scattering and vacuum instability by exponential steps
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