English

Super-critical QED-effects via VP-energy

Atomic Physics 2022-01-19 v1 High Energy Physics - Phenomenology

Abstract

The properties of the QED-vacuum energy \hbox{\cal E }_{VP} under Coulomb super-criticality condition Z>Zcr,1Z>Z_{cr,1} are explored in essentially non-perturbative approach. It is shown that in the supercritical region \hbox{\cal E }_{VP} is the decreasing function of the Coulomb source parameters, resulting in decay into the negative range as Z4/R\sim - Z^4/R. The conditions, under which the emission of vacuum positrons can be unambiguously detected on the nuclear conversion pairs background, are also discussed. In particular, for a super-critical dummy nucleus with charge ZZ and R(Z)1.2 (2.5Z)1/3R(Z) \simeq 1.2 \ (2.5\, Z)^{1/3} fm the lowest 1s1s-level dives into the lower continuum at Zcr,1170Z_{cr,1} \simeq 170 (the model of uniformly charged ball) or Zcr,1173Z_{cr,1} \simeq 173 (the spherical shell model), whereupon there appears the vacuum shell with the induced charge (-2e2|e|) and the QED-vacuum becomes charged, but in both cases the actual threshold for reliable spontaneous positrons detection is not less than Z210Z^\ast \simeq 210.

Cite

@article{arxiv.2201.05925,
  title  = {Super-critical QED-effects via VP-energy},
  author = {K. Sveshnikov and Yu. Voronina},
  journal= {arXiv preprint arXiv:2201.05925},
  year   = {2022}
}

Comments

arXiv admin note: text overlap with arXiv:2201.04829

R2 v1 2026-06-24T08:51:15.386Z