English

Effective action for delta potentials: spacetime-dependent inhomogeneities and Casimir self-energy

High Energy Physics - Theory 2021-03-23 v2 Quantum Physics

Abstract

We study the vacuum fluctuations of a quantum scalar field in the presence of a thin and inhomogeneous flat mirror, modeled with a delta potential. Using Heat-Kernel techniques, we evaluate the Euclidean effective action perturbatively in the inhomogeneities (nonperturbatively in the constant background). We show that the divergences can be absorbed into a local counterterm, and that the remaining finite part is in general a nonlocal functional of the inhomogeneities, which we compute explicitly for massless fields in D=4D=4 dimensions. For time-independent inhomogeneities, the effective action gives the Casimir self-energy for a partially transmitting mirror. For time-dependent inhomogeneities, the Wick-rotated effective action gives the probability of particle creation due to the dynamical Casimir effect.

Keywords

Cite

@article{arxiv.2010.11144,
  title  = {Effective action for delta potentials: spacetime-dependent inhomogeneities and Casimir self-energy},
  author = {S. A. Franchino-Viñas and F. D. Mazzitelli},
  journal= {arXiv preprint arXiv:2010.11144},
  year   = {2021}
}

Comments

25 pages, 4 figures. Added a discussion on the renormalization process. Added some missing factors in formulas (72) and (73), App. A