Quantum radiation from a partially reflecting moving mirror
arXiv:gr-qc/9910098 · doi:10.1088/0264-9381/18/4/304
Abstract
We consider the quantum radiation from a partially reflecting moving mirror for the massless scalar field in 1+1 Minkowski space. Partial reflectivity is achieved by localizing a delta-type potential at the mirror's position. The radiated flux is exactly obtained for arbitrary motions as an integral functional of the mirror's past trajectory. Partial reflectivity corrections to the perfect mirror result are discussed.
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References in corpus (6)
- Fluctuations and dissipation for a mirror in vacuum
- Motional Casimir force
- Quantum fluctuations of position of a mirror in vacuum
- Causality, stability and passivity for a mirror in vacuum
- Quantum Effects in the Presence of Expanding Semi-Transparent Spherical Mirrors
- Quantum Flux from a Moving Spherical Mirror
Cited by in corpus (14)
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- Dynamical Casimir effect in nonlinear vibrating cavities
- Radiation from accelerated perfect or dispersive mirrors following prescribed relativistic asymptotically inertial trajectories
- Dynamical Casimir effect for semitransparent mirrors
- Particle Production by a Relativistic Semi-Transparent Mirror in 1+3D Minkowski Spacetime
- Dynamical Casimir effect enhanced by decreasing the mirror reflectivity
- Dynamical Casimir Effect and the Black Body Spectrum
- Quantum Radiation of Uniformly Accelerated Spherical Mirrors
- Particle production by a relativistic semitransparent mirror of finite size and thickness
- Vacuum fluctuation effects due to an Abelian gauge field in 2+1 dimensions, in the presence of moving mirrors
- There and Back Again: Quantum Radiation from Round-trip Flying Mirrors
- Quantum communication through a partially reflecting accelerating mirror