Influence functional for two mirrors interacting via radiation pressure
arXiv:2111.11065 · doi:10.1103/PhysRevD.105.016023
Abstract
We study the effective dynamics of two mirrors, forming an optical cavity, and interacting with the cavity field via radiation pressure. We pursue a perturbative influence functional approach to trace out the degrees-of-freedom of the field, and obtain the second order effective action for the system composed by the mirrors. We find that the interaction between the mirrors is mediated by pairs of field modes, which combine in such a way to give rise to two different interaction channels. We find that the quantum and thermal fluctuations of the cavity field result in coloured, Gaussian stochastic noises acting on the mirrors. To each of these noises is associated a dissipative effect, and the corresponding power spectra and susceptibilities are related via generalized fluctuation-dissipation relations. We finally demonstrate that the dynamics of the mirrors admits a stochastic interpretation, and give the relative quantum Langevin equations.
22 pages, 1 figure. Comments are welcome
References in corpus (7)
- Motional Quantum Ground State of a Levitated Nanoparticle from Room Temperature
- The dynamical Casimir effect in superconducting microwave circuits
- Vacuum energy densities of a field in a cavity with a mobile boundary
- Vacuum Casimir energy densities and field divergences at boundaries
- Nonequilibrium dressing in a cavity with a movable reflecting mirror
- Dissipative dynamics of a particle coupled to field via internal degrees of freedom
- Nonequilibrium Steady State and Heat Transport in Nonlinear Open Quantum Systems: Stochastic Influence Action and Functional Perturbative Analysis
Cited by in corpus (8)
- Spatial correlations of field observables in two half-spaces separated by a movable perfect mirror
- Noise and dissipation on a moving mirror induced by the dynamical Casimir emission
- Optomechanical Backreaction of Quantum Field Processes in Dynamical Casimir Effect
- Corrections to the Optomechanical Hamiltonian from Quadratic Fluctuations of a Moving Mirror
- Field observables near a fluctuating boundary
- Foundational Issues in Dynamical Casimir Effect and Analogue Features in Cosmological Particle Creation
- Bilateral photon emission from a vibrating mirror and multiphoton entanglement generation
- Atom-Field-Medium Interactions I: Graded Influence Actions for Harmonic Atoms in a Dielectric-Altered Quantum Field