Gravitational Casimir effect at finite temperature
arXiv:1605.08060 · doi:10.1007/s10773-016-3156-y
Abstract
The energy-momentum tensor for the gravitoelectromagnetism (GEM) theory in the real-time finite temperature field theory formalism is presented. Expressions for the Casimir energy and pressure at zero and finite temperature are obtained. An analysis of the Casimir effect for the GEM field is developed.
15 pages, title slightly changed, presentation improved. Version accepted for publication in IJTP
References in corpus (6)
- Gravity Probe B: Final Results of a Space Experiment to Test General Relativity
- How Does Casimir Energy Fall?
- Gravitational Casimir effect
- Quantum fields in toroidal topology
- How does Casimir energy fall? II. Gravitational acceleration of quantum vacuum energy
- Casimir Effect in the Horava-Lifshitz Gravity with a Cosmological Constant
Cited by in corpus (6)
- Casimir effect in Lorentz-violating scalar field theory: a local approach
- Lorentz violation and Gravitoelectromagnetism: Casimir effect and Stefan-Boltzmann law at Finite temperature
- Vacuum energy, the Casimir effect, and Newton's non-constant
- Casimir effect and Stefan-Boltzmann law in Yang-Mills theory at finite temperature
- Gravitoelectromagnetic knot fields
- On Gravitational Casimir Effect and Stefan-Boltzmann Law at Finite Temperature