Cooling of a mirror in cavity optomechanics with a chirped pulse
arXiv:1108.5835 · doi:10.1103/PhysRevA.84.053838
Abstract
We investigate the response of a harmonically confined mirror to an optical pulse in cavity optomechanics. We show that when the pulsed coupling strength takes the form of a chirped pulse, thermal fluctuations of the mirror can be significantly transferred to the cavity field. In addition, the frequency modulation of the pulse could enable a better cooling performance by suppressing the sensitivity of the dependence of detuning and pulse areas. Using numerical investigations, we find that the pulsed-cooling is mainly limited by the cavity-field decay rate.
6 pages, 4 figures
References in corpus (24)
- Optomechanical entanglement between a movable mirror and a cavity field
- Quantum Theory of Cavity-Assisted Sideband Cooling of Mechanical Motion
- Theory of ground state cooling of a mechanical oscillator using dynamical back-action
- Observation of strong coupling between a micromechanical resonator and an optical cavity field
- Radiation-pressure cooling and optomechanical instability of a micro-mirror
- Self-cooling of a micro-mirror by radiation pressure
- Resolved Sideband Cooling of a Micromechanical Oscillator
- Ground-state cooling of a micromechanical oscillator: generalized framework for cold damping and cavity-assisted cooling schemes
- Opto-mechanical transducers for long-distance quantum communication
- Storing light as a mechanical excitation in a silica optomechanical resonator
- Robust entanglement of a micromechanical resonator with output optical fields
- Creating and probing macroscoping entanglement with light
- Steady state entanglement in the mechanical vibrations of two dielectric membranes
- Emergence of atom-light-mirror entanglement inside an optical cavity
- Quantum Optomechanics - throwing a glance
- Pulsed quantum optomechanics
- Cooling and squeezing via quadratic optomechanical coupling
- Cavity-assisted squeezing of a mechanical oscillator
- Cavity optomechanical coupling assisted by an atomic gas
- Optical wavelength conversion of quantum states with optomechanics
- Parametric generation of quadrature squeezing of mirrors in cavity optomechanics
- Creating and Verifying a Quantum Superposition in a Micro-optomechanical System
- Fast ground-state cooling of mechanical resonator with time-dependent optical cavities
- Macroscopic thermal entanglement due to radiation pressure
Cited by in corpus (25)
- Dynamic dissipative cooling of a mechanical oscillator in strong-coupling optomechanics
- Mechanical PT symmetry in coupled optomechanical systems
- Review of cavity optomechanical cooling
- Simultaneous cooling of coupled mechanical resonators in cavity optomechanics
- Cross-Kerr effect on an optomechanical system
- Entangled state engineering of vibrational modes in a multi-membrane optomechanical system
- Optimal limits of cavity optomechanical cooling in the strong coupling regime
- Energy localization enhanced ground-state cooling of mechanical resonator from room temperature in optomechanics using a gain cavity
- Optimal quantum parameter estimation in a pulsed quantum optomechanical system
- Auxiliary-cavity-assisted ground-state cooling of optically levitated nanosphere in the unresolved-sideband regime
- Optomechanical laser cooling with mechanical modulations
- Cooling mechanical resonators to quantum ground state from room temperature
- Optomechanically-induced-transparency cooling of massive mechanical resonators to the quantum ground state
- Multimode cold-damping optomechanics with delayed feedback
- Creating mirror-mirror quantum correlations in optomechanics
- Stroboscopic quantum optomechanics
- Accelerated ground-state cooling of an optomechanical resonator via shortcuts to adiabaticity
- Millionfold improvement in multivibration-feedback optomechanical refrigeration via auxiliary mechanical coupling
- Pulsed quantum interaction between two distant mechanical oscillators
- Hybrid coupling optomechanically assisted nonreciprocal photon blockade
- Optimal control of linear Gaussian quantum systems via quantum learning control
- Highly efficient cooling of mechanical resonator with square pulse drives
- Two-atom quantum gate in hybrid cavity optomechanics
- Optomechanical cooling by STIRAP-assisted energy transfer an alternative route towards the mechanical ground state
- Significant enhancement in refrigeration and entanglement in auxiliary-cavity-assisted optomechanical systems