Light and Airy: a simple solution for relativistic quantum acceleration radiation
arXiv:2101.10576 · doi:10.3390/universe7030060
Abstract
We study the quantum radiation of particle production by vacuum from an ultra-relativistic moving mirror (dynamical Casimir effect) solution that allows (possibly for the first time) analytically calculable time evolution of particle creation and an Airy particle spectral distribution. The reality of the beta Bogoliubov coefficients is responsible for the simplicity, and the mirror is asymptotically inertial at the speed of light, with finite energy production. We also discuss general relations regarding negative energy flux, the transformation to the 1-D Schr{ö}dinger equation, and the incompleteness of entanglement entropy.
10 pages, 9 figures
References in corpus (7)
- The dynamical Casimir effect in superconducting microwave circuits
- Entanglement entropy and negative energy in two dimensions
- On Horizonless Temperature with an Accelerating Mirror
- Slicing the Vacuum: New Accelerating Mirror Solutions of the Dynamical Casimir Effect
- The mirror at the edge of the universe: Reflections on an accelerated boundary correspondence with de Sitter cosmology
- Finite thermal particle creation of Casimir light
- Radiation from an inertial mirror horizon