One-loop energy-momentum tensor in QED with electriclike background

S. P. Gavrilov and D. M. Gitman
Phys. Rev. D 78, 045017 – Published 15 August 2008

Abstract

We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and current density of Dirac’s field on a constant electriclike background. One of the goals of this calculation is to give a consistent description of backreaction in such a theory. Two cases of initial states are considered: the vacuum state and the thermal equilibrium state. First, we perform calculations for the vacuum initial state. In the obtained expressions, we separate the contributions due to particle creation and vacuum polarization. The latter contributions are related to the Heisenberg-Euler Lagrangian. Then, we study the case of the thermal initial state. Here, we separate the contributions due to particle creation, vacuum polarization, and the contributions due to the work of the external field on the particles at the initial state. All these contributions are studied in detail, in different regimes of weak and strong fields and low and high temperatures. The obtained results allow us to establish restrictions on the electric field and its duration under which QED with a strong constant electric field is consistent. Under such restrictions, one can neglect the backreaction of particles created by the electric field. Some of the obtained results generalize the calculations of Heisenberg-Euler for energy density to the case of arbitrary strong electric fields.

  • Received 28 January 2008

DOI:https://doi.org/10.1103/PhysRevD.78.045017

©2008 American Physical Society

Authors & Affiliations

S. P. Gavrilov1,* and D. M. Gitman2,†

  • 1Department of General and Experimental Physics, Herzen State Pedagogical University of Russia, Moyka emb. 48, 191186 St. Petersburg, Russia
  • 2Instituto de Física, Universidade de São Paulo, Caixa Postal 66318, CEP 05315-970 São Paulo, SP, Brazil

  • *gavrilovsergeyp@yahoo.com
  • gitman@dfn.if.usp.br

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Issue

Vol. 78, Iss. 4 — 15 August 2008

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