Nonstationary Casimir effect in cavities with two resonantly coupled modes
arXiv:quant-ph/0109019 · doi:10.1016/S0375-9601(01)00626-0
Abstract
We study the peculiarities of the nonstationary Casimir effect (creation of photons in cavities with moving boundaries) in the special case of two resonantly coupled modes with frequencies and , parametrically excited due to small amplitude oscillations of the ideal cavity wall at the frequency (with ). The effects of thermally induced oscillations in time dependences of the mean numbers of created photons and the exchange of quantum purities between the modes are discovered. Squeezing and photon distributions in each modes are calculated for initial vacuum and thermal states. A possibility of compensation of detunings is shown.
17 pages, 5 ps figures, LaTex, accepted for publication in Physics Letters A
References in corpus (1)
Cited by in corpus (16)
- Current status of the Dynamical Casimir Effect
- Photon generation in an electromagnetic cavity with a time-dependent boundary
- Quantum electromagnetic field in a three dimensional oscillating cavity
- Dynamical Casimir Effect in a Leaky Cavity at Finite Temperature
- Photon generation from vacuum in nondegenerate cavities with regular and random periodic displacements of boundaries
- Dynamical Casimir Effect in cavity with N-level detector or N-1 two-level atoms
- Numerical investigation of photon creation in a three-dimensional resonantly vibrating cavity: TE-modes
- Mode-mixing quantum gates and entanglement without particle creation in periodically accelerated cavities
- Numerical approach to the dynamical Casimir effect
- Exact closed form analytical solutions for vibrating cavities
- Entanglement of resonantly coupled field modes in cavities with vibrating boundaries
- Numerical approach to simulating interference phenomena in a two-oscillating mirrors cavity
- Photon statistics in the dynamical Casimir effect modified by a harmonic oscillator detector
- Asymptotical photon distributions in the dissipative Dynamical Casimir Effect
- Entanglement generation in relativistic cavity motion
- Exact solution of a non-stationary cavity with one intermode interaction