Parametric Normal-Mode Splitting in Cavity Optomechanics
arXiv:0805.2528 · doi:10.1103/PhysRevLett.101.263602
Abstract
Recent experimental progress in cavity optomechanics has allowed cooling of mesoscopic mechanical oscillators via dynamic backaction provided by the parametric coupling to either an optical or an electrical resonator. Here we analyze the occurrence of normal-mode splitting in backaction cooling at high input power. We find that a hybridization of the oscillator's motion with the fluctuations of the driving field occurs and leads to a splitting of the mechanical and optical fluctuation spectra. Moreover, we find that cooling experiences a classical limitation through the cavity lifetime.
4 pages, 3 figures
References in corpus (14)
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- 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
- 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
- Cooling of a micro-mechanical oscillator using radiation pressure induced dynamical back-action
- Cooling a nanomechanical resonator with quantum back-action
- Optical dilution and feedback cooling of a gram-scale oscillator to 6.9 mK
- Dynamical Backaction of Microwave Fields on a Nanomechanical Oscillator
- Trapping and Cooling a mirror to its quantum mechanical ground state
- Cavity-Assisted Back Action Cooling of Mechanical Resonators
- Passive Cooling of a Micromechanical Oscillator with a Resonant Electric Circuit
Cited by in corpus (135)
- Cavity Optomechanics
- Sideband Cooling Micromechanical Motion to the Quantum Ground State
- Non-Hermitian Physics
- Optomechanically induced transparency
- Observation of strong coupling between a micromechanical resonator and an optical cavity field
- Quantum-coherent coupling of a mechanical oscillator to an optical cavity mode
- Circuit cavity electromechanics in the strong coupling regime
- The Electromagnetically Induced Transparency in Mechanical Effects of Light
- Preparation and Detection of a Mechanical Resonator Near the Ground State of Motion
- Opto-mechanical transducers for long-distance quantum communication
- Toward Quantum Superposition of Living Organisms
- Mechanical systems in the quantum regime
- Demonstration of an ultracold micro-optomechanical oscillator in a cryogenic cavity
- Sideband Cooling Beyond the Quantum Limit with Squeezed Light
- Quantum Optomechanics - throwing a glance
- Cavity optomechanics with stoichiometric SiN films
- Cooling and squeezing via quadratic optomechanical coupling
- Tunable double optomechanically induced transparency in an optomechanical system
- Dynamic dissipative cooling of a mechanical oscillator in strong-coupling optomechanics
- Optically Levitating Dielectrics in the Quantum Regime: Theory and Protocols
- Non-reciprocal nonlinear optic induced transparency and frequency conversion on a chip
- Entangling optical and microwave cavity modes by means of a nanomechanical resonator
- Determination of the vacuum optomechanical coupling rate using frequency noise calibration
- From Cavity Electromechanics to Cavity Optomechanics
- High-order exceptional points in optomechanics
- Cavity quantum electro-optics
- Optomechanical sideband cooling of a micromechanical oscillator close to the quantum ground state
- Parametric generation of quadrature squeezing of mirrors in cavity optomechanics
- Normal mode splitting in a coupled system of nanomechanical oscillator and parametric amplifier cavity
- Dissipative Optomechanics in a Michelson--Sagnac Interferometer
- Optomechanical transducers for quantum information processing
- Nonlinear interaction effects in a strongly driven optomechanical cavity
- Phonon mediated electromagnetically induced absorption in hybrid opto-electro mechanical systems
- Enhancing Quantum Effects via Periodic Modulations in Optomechanical Systems
- Control and manipulation of electromagentically induced transparency in a nonlinear optomechanical system with two movable mirrors
- Review of cavity optomechanical cooling
- Single-photon optomechanics in the strong coupling regime
- Normal Mode Splitting and Antibunching in Stokes and Anti-Stokes Processes in Cavity Optomechanics: Radiation Pressure Induced Four-Wave Mixing Cavity Optomechanics
- A dissipative quantum reservoir for microwave light using a mechanical oscillator
- Single-Atom Cavity QED and Opto-Micromechanics
- Hamiltonian chaos in a coupled BEC -- optomechanical cavity system
- Phase-noise induced limitations on cooling and coherent evolution in opto-mechanical systems
- Cross-Kerr effect on an optomechanical system
- Large cooperativity and microkelvin cooling with a three-dimensional optomechanical cavity
- Electromagnetically induced transparency and slow light in two-mode optomechanics
- Distinguishing photon blockade in a PT-symmetric optomechanical system
- Cavity Quantum Optomechanics of Ultracold Atoms in an Optical Lattice: Normal-Mode Splitting
- Dynamics of a movable micro-mirror in a nonlinear optical cavity
- Theoretical analysis of mechanical displacement measurement using a multiple cavity mode transducer
- Quantum Electromechanics on Silicon Nitride Nanomembranes
- Unifying Brillouin scattering and cavity optomechanics
- Two-dimensional quantum motion of a levitated nanosphere
- Quantum-limited amplification and parametric instability in the reversed dissipation regime of cavity optomechanics
- Opto- and electro-mechanical entanglement improved by modulation
- Strong-coupling effects in dissipatively coupled optomechanical systems
- An integrated low phase noise radiation-pressure-driven optomechanical oscillator chipset
- Normal--mode splitting in a weakly coupled optomechanical system
- Electromechanically induced absorption in a circuit nano-electromechanical system
- Observation of Brillouin optomechanical strong coupling with an 11 GHz mechanical mode
- Nanomechanical Inverse Electromagnetically Induced Transparency and Confinement of Light in Normal modes
- Optomechanically induced transparency and gain
- Double Electromagnetically Induced Transparency and Narrowing of Probe Absorption in a Ring Cavity with Nanomechanical Mirrors
- Radiation Pressure Cooling as a Quantum Dynamical Process
- Steady state entanglement, cooling, and tristability in a nonlinear optomechanical cavity
- Quantum dynamics of a high-finesse optical cavity coupled with a thin semi-transparent membrane
- Strong Optomechanical Coupling at Room Temperature by Coherent Scattering
- Enhancement of few-photon optomechanical effects with cross-Kerr nonlinearity
- EIT-related phenomena and their mechanical analogs
- Generating quadrature squeezed light with dissipative optomechanical coupling
- Optimal limits of cavity optomechanical cooling in the strong coupling regime
- Reactive-Coupling-Induced Normal Mode Splittings in Microdisk Resonators Coupled to Waveguides
- Can reactive coupling beat motional quantum limit of nano waveguides coupled to microdisk resonator
- Ground state cooling of nanomechanical resonator via parametric linear coupling
- Photon-Pressure Strong-Coupling between two Superconducting Circuits
- Steady-state entanglement and normal-mode splitting in an atom-assisted optomechanical system with intensity-dependent coupling
- Manifestation of classical nonlinear dynamics in optomechanical entanglement with a parametric amplifier
- Ground state cooling of micromechanical oscillators in the unresolved sideband regime induced by a quantum well
- Optomechanically induced amplification and perfect transparency in double-cavity optomechanics
- -symmetry from Lindblad dynamics in an optomechanical system
- Exciton-assisted optomechanics with suspended carbon nanotubes
- Breaking optomechanical cooling limit by two drive fields on a membrane-in-middle system
- Controllable nonlinear effects in a hybrid optomechanical semiconductor microcavity containing a quantum dot and Kerr medium
- Cooling mechanical resonators to quantum ground state from room temperature
- Effects of linear and quadratic dispersive couplings on optical squeezing in an optomechanical system
- Nonreciprocal transmission and fast-slow light effects in a cavity optomechanical system
- -symmetry-breaking enhanced cavity optomechanical magnetometry
- Robust continuous-variable entanglement of microwave photons with cavity electromechanics
- Dynamical and quantum effects of collective dissipation in optomechanical systems
- Topological phase induced by distinguishing parameter regimes in cavity optomechanical system with multiple mechanical resonators
- Degenerate optomechanical parametric oscillators: cooling in the vicinity of a critical point
- Electro-optomechanical equivalent circuits for quantum transduction
- Active optomechanics through relaxation oscillations
- Cooling photon-pressure circuits into the quantum regime
- Efficient microwave frequency conversion mediated by the vibrational motion of a silicon nitride nanobeam oscillator
- Accelerated ground-state cooling of an optomechanical resonator via shortcuts to adiabaticity
- Degeneracy-breaking and Long-lived Multimode Microwave Electromechanical Systems Enabled by Cubic Silicon-Carbide Membrane Crystals
- A Green's function approach to the linear response of a driven dissipative optomechanical system
- Phase noise and squeezing spectra of the output field of an optical cavity containing an interacting Bose-Einstein condensate
- Dissipation-induced topological phase transition and periodic-driving-induced photonic topological state transfer in a small optomechanical lattice
- Optimal entanglement generation in optomechanical systems via Krotov control of covariance matrix dynamics
- Optical response of a dual membrane active-passive optomechanical cavity
- An efficiently and tunable switch between slow- and fast-light in double mode with an optomechanical system
- Role of Optical Density of States in Two-mode Optomechanical Cooling
- Phase Conjugation in Quantum Optomechanics
- Optimal control of linear Gaussian quantum systems via quantum learning control
- Highly efficient cooling of mechanical resonator with square pulse drives
- Enhancement of Opto-Electro-Mechanical Entanglement through Three-Level Atoms
- Quantum noise spectra for periodically-driven cavity optomechanics
- Nonlinear optomechanical systems with quasi-periodic and chaotic dynamics
- Optomechanical coupling between two optical cavities: cooling of a micro-mirror and parametric normal mode splitting
- Optical normal-mode-induced phonon-sideband splitting in photon-blockade effect
- Entanglement engineering of optomechanical systems by reinforcement learning
- Photon-Pressure with an Effective Negative Mass Microwave Mode
- Analog curved spacetimes in the reversed dissipation regime of cavity optomechanics
- Normal-mode splitting in the optomechanical system with an optical parametric amplifier and coherent feedback
- Optomechanical cooling by STIRAP-assisted energy transfer an alternative route towards the mechanical ground state
- Kerr-like nonlinearities in an optomechanical system with an asymmetric anharmonic mechanical resonator
- Quantum Simulation of Tunable and Ultrastrong Mixed-Optomechanics
- Temporal evolution of a driven optomechanical system in the strong coupling regime
- Level attraction from interference in two-tone driving
- Laser Cooling of Nuclear Magnons
- Mechanically-mediated optical response in hybrid opto-electromechanical systems
- Approximate evolution for a hybrid system: An optomechanical Jaynes-Cummings model
- Quantum simulation of a three-mode optomechanical system based on the Fredkin-type interaction
- Dynamics of a hybrid optomechanical system in the framework of the generalized linear response theory
- Quantum state purity versus average phonon number for characterization of mechanical oscillators in cavity optomechanics
- Mimicking a hybrid-optomechanical system using an intrinsic quadratic coupling in conventional optomechanical system
- Strong coupling diagnostics for multi-mode open systems
- Kerr-enhanced optomechanical entanglement generation via reservoir design
- Temporal evolution of a forced optomechanical system with linear and quadratic field -- mechanical oscillator couplings
- Fundamental and second-subharmonic Autler-Townes splitting in classical systems
- Manipulating Topological Polaritons in Optomechanical Ladders
- Nonreciprocal Coupling Induced Non-Hermitian Entanglement in Optomechanical Systems
- Optical response properties of hybrid electro-opto-mechanical system interacting with a qubit
- A photonic transistor device based on photons and phonons in a cavity electromechanical system