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October 3, 2024Physical Review Research14 citationsOpen Access

Kinetic theory of vacuum pair production in uniform electric fields revisited

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IAI. A. AleksandrovAKA. KudlisAKA. I. Klochai

Key Points

  • Pair production occurs in vacuum due to a time-dependent electric field, indicating major implications for quantum physics.
  • Key evidence shows that existing kinetic equations are incorrect as the field rotates, affecting particle distributions.
  • Theoretical analysis utilizes Wigner-function formalism to quantify electron-positron interactions under specific conditions, emphasizing model accuracy and effectiveness for future studies.  — This theoretical framework aligns with previously established methods, supporting the study's findings and potential applications in quantum field theory.  

Abstract

We investigate the phenomenon of electron-positron pair production from vacuum in the presence of a uniform time-dependent electric field of arbitrary polarization. Taking into account the interaction with the external classical background in a nonperturbative manner, we quantize the electron-positron field and derive a system of ten quantum kinetic equations (QKEs) showing that the previously-used QKEs are incorrect once the external field rotates in space. We employ then the Wigner-function formalism of the field quantization and establish a direct connection between the Dirac-Heisenberg-Wigner (DHW) approach to investigating the vacuum pair-production process and the QKEs. We provide a self-contained description of the two theoretical frameworks rigorously proving their equivalence and present an exact one-to-one correspondence between the kinetic functions involved within the two techniques. Special focus is placed on the analysis of the spin effects in the final particle distributions. Published by the American Physical Society 2024

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Cite This Study

Aleksandrov et al. (2024) studied this question.

synapsesocial.com/papers/68e55db1e2b3180350efb068https://doi.org/10.1103/physrevresearch.6.043009
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