English

Quantum radiation in dielectric media with dispersion and dissipation

Quantum Physics 2021-01-04 v2

Abstract

By a generalization of the Hopfield model, we construct a microscopic Lagrangian describing a dielectric medium with dispersion and dissipation. This facilitates a well-defined and unambiguous ab initio\textit{ab initio} treatment of quantum electrodynamics in such media, even in time-dependent backgrounds. As an example, we calculate the number of photons created by switching on and off dissipation in dependence on the temporal switching function. This effect may be stronger than quantum radiation produced by variations of the refractive index Δn(t)\Delta n(t) since the latter are typically very small and yield photon numbers of order (Δn)2(\Delta n)^2. As another difference, we find that the partner particles of the created medium photons are not other medium photons but excitations of the environment field causing the dissipation (which is switched on and off).

Keywords

Cite

@article{arxiv.1912.09869,
  title  = {Quantum radiation in dielectric media with dispersion and dissipation},
  author = {Sascha Lang and Ralf Schützhold and William G. Unruh},
  journal= {arXiv preprint arXiv:1912.09869},
  year   = {2021}
}

Comments

7 pages, 2 figures