Laser Theory for Optomechanics: Limit Cycles in the Quantum Regime
arXiv:1310.1298 · doi:10.1103/PhysRevX.4.011015
Abstract
Optomechanical systems can exhibit self-sustained limit cycles where the quantum state of the mechanical resonator possesses nonclassical characteristics such as a strongly negative Wigner density, as was shown recently in a numerical study by Qian et al. [Physical Review Letters, 109, 253601 (2012)]. Here we derive a Fokker-Planck equation describing mechanical limit cycles in the quantum regime which correctly reproduces the numerically observed nonclassical features. The derivation starts from the standard optomechanical master equation, and is based on techniques borrowed from the laser theory due to Haake's and Lewenstein. We compare our analytical model with numerical solutions of the master equation based on Monte-Carlo simulations, and find very good agreement over a wide and so far unexplored regime of system parameters. As one main conclusion, we predict negative Wigner functions to be observable even for surprisingly classical parameters, i.e. outside the single-photon strong coupling regime, for strong cavity drive, and rather large limit cycle amplitudes. The general approach taken here provides a natural starting point for further studies of quantum effects in optomechanics.
17 pages, 7 figures
References in corpus (11)
- QuTiP 2: A Python framework for the dynamics of open quantum systems
- Sideband Cooling Micromechanical Motion to the Quantum Ground State
- Quantum Theory of Cavity-Assisted Sideband Cooling of Mechanical Motion
- Theory of ground state cooling of a mechanical oscillator using dynamical back-action
- Ground-state cooling of a micromechanical oscillator: generalized framework for cold damping and cavity-assisted cooling schemes
- Single-photon Optomechanics
- State Transfer Between a Mechanical Oscillator and Microwave Fields in the Quantum Regime
- Observation of Radiation Pressure Shot Noise on a Macroscopic Object
- The optomechanical instability in the quantum regime
- Nonclassical mechanical states in an optomechanical micromaser analogue
- Single-atom laser generates nonlinear coherent states
Cited by in corpus (59)
- Phonon counting and intensity interferometry of a nanomechanical resonator
- Mechanical PT symmetry in coupled optomechanical systems
- Quantum signatures of Chimera states
- Noise-Induced Transitions in Optomechanical Synchronization
- Genuine quantum signatures in synchronization of anharmonic self-oscillators
- Synchronization dynamics of two nanomechanical membranes within a Fabry-Perot cavity
- Topological pumping of photons in nonlinear resonator arrays
- A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultra-strong coupling regime
- Quantum limit-cycles and the Rayleigh and van der Pol oscillators
- Synchronization of an optomechanical system to an external drive
- Quantum optomechanical piston engines powered by heat
- Nonclassical energy squeezing of a macroscopic mechanical oscillator
- Noise robustness of synchronization of two nanomechanical resonators coupled to the same cavity field
- Cavity Quantum Electrodynamics with Frequency-Dependent Reflectors
- Nonlinear dynamics of weakly dissipative optomechanical systems
- Topological synchronization of quantum van der Pol oscillators
- Phonon amplification in two coupled cavities containing one mechanical resonator
- Entangled-state generation and Bell inequality violations in nanomechanical resonators
- Phase-Controlled Phonon Laser
- General linearized theory of quantum fluctuations around arbitrary limit cycles
- Antibunching in an optomechanical oscillator
- Phase noise of self-sustained optomechanical oscillators
- Ultra-Strong Optomechanics Incorporating the Dynamical Casimir Effect
- Sub-Poissonian Phonon Lasing in Three-Mode Optomechanics
- Frequency Combs in a Lumped-Element Josephson-Junction Circuit
- Quantum Origin of Limit Cycles, Fixed Points, and Critical Slowing Down
- Enhancement of Quantum Sensing in a Cavity Optomechanical System around Quantum Critical Point
- Iterative solutions to the steady state density matrix for optomechanical systems
- Interference effects in hybrid cavity optomechanics
- Quadrature squeezing enhances Wigner negativity in a mechanical Duffing oscillator
- Instabilities near ultrastrong coupling in microwave optomechanical cavity
- Dissipative phase transitions in optomechanical systems
- Floquet theory for temporal correlations and spectra in time-periodic open quantum systems: Application to squeezed parametric oscillation beyond the rotating-wave approximation
- Parametric control of self-sustained and self-modulated optomechanical oscillations
- Intermittency in an Optomechanical Cavity Near a Subcritical Hopf Bifurcation
- Optomechanical Self-Oscillations in an Anharmonic Potential: Engineering a Nonclassical Steady State
- Scheme for steady-state preparation of a harmonic oscillator in the first excited state
- Quantum nonlinear dynamics of optomechanical systems in the strong coupling regime
- Hydrodynamic interpretation of generic squeezed coherent states: A kinetic theory
- Nonclassical mechanical states in cavity optomechanics in the single-photon strong-coupling regime
- Fröhlich Condensate of Phonons in Optomechanical Systems
- Time Resolved Phase Space Tomography of an Optomechanical Cavity
- Unraveling nonclassicality in the optomechanical instability
- Lie Algebraic Quantum Phase Reduction
- Quantum pure noise-induced transitions: A truly nonclassical limit cycle sensitive to number parity
- Dissipation-driven nonclassical state generation in optomechanics with squeezed light
- Quantum signatures of bistability and limit cycle in Kerr-modified cavity magnomechanics
- Exact steady state of quantum van der Pol oscillator: critical phenomena and enhanced metrology
- Photon Recoil Spectroscopy: Systematic Shifts and Nonclassical Enhancements
- Dynamical Generation of Synthetic Electric Fields for Photons in the Quantum Regime
- Semiclassical bifurcations and topological phase transitions in a one-dimensional lattice of coupled Lipkin-Meshkov-Glick models
- Analytical exploration of the optomechanical attractor diagram and of limit cycles
- Simple yet Accurate Stochastic Approach to the Quantum Phase Noise of Nanolasers
- Quantum Dynamical Signatures of Topological Flow Transitions in Limit Cycle Phases
- Work extraction from heat-powered quantized optomechanical setups
- Synchronizing microwave cQED limit-cycle oscillators
- Quantum limit cycles and synchronization from a measurement perspective
- Tunable anharmonicity in cavity optomechanics in the unresolved sideband regime
- Phonon and Photon Lasing Dynamics in Optomechanical Cavities