Demonstration of an ultracold micro-optomechanical oscillator in a cryogenic cavity
arXiv:0901.1801 · doi:10.1038/nphys1301
Abstract
Preparing and manipulating quantum states of mechanical resonators is a highly interdisciplinary undertaking that now receives enormous interest for its far-reaching potential in fundamental and applied science. Up to now, only nanoscale mechanical devices achieved operation close to the quantum regime. We report a new micro-optomechanical resonator that is laser cooled to a level of 30 thermal quanta. This is equivalent to the best nanomechanical devices, however, with a mass more than four orders of magnitude larger (43 ng versus 1 pg) and at more than two orders of magnitude higher environment temperature (5 K versus 30 mK). Despite the large laser-added cooling factor of 4,000 and the cryogenic environment, our cooling performance is not limited by residual absorption effects. These results pave the way for the preparation of 100-um scale objects in the quantum regime. Possible applications range from quantum-limited optomechanical sensing devices to macroscopic tests of quantum physics.
Published version
References in corpus (19)
- Strong dispersive coupling of a high finesse cavity to a micromechanical membrane
- 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
- Ground-state cooling of a micromechanical oscillator: generalized framework for cold damping and cavity-assisted cooling schemes
- Cooling a nanomechanical resonator with quantum back-action
- Feedback cooling of a cantilever's fundamental mode below 5 mK
- Parametric Normal-Mode Splitting in Cavity Optomechanics
- High-sensitivity optical monitoring of a micro-mechanical resonator with a quantum-limited optomechanical sensor
- High quality mechanical and optical properties of commercial silicon nitride membranes
- Dynamical Backaction of Microwave Fields on a Nanomechanical Oscillator
- Cavity-Assisted Back Action Cooling of Mechanical Resonators
- An off-board quantum point contact as a sensitive detector of cantilever motion
- Monocrystalline AlGaAs heterostructures for high-reflectivity high-Q micromechanical resonators in the MHz regime
- Radiation-pressure self-cooling of a micromirror in a cryogenic environment
- Noise thermometry and electron thermometry of a sample-on-cantilever system below 1 Kelvin
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- Laser cooling of a nanomechanical oscillator into its quantum ground state
- Sideband Cooling Micromechanical Motion to the Quantum Ground State
- Introduction to Quantum Noise, Measurement and Amplification
- The photon blockade effect in optomechanical systems
- Preparation and Detection of a Mechanical Resonator Near the Ground State of Motion
- Nanomechanical motion measured with precision beyond the standard quantum limit
- Opto-mechanical transducers for long-distance quantum communication
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- Mechanical systems in the quantum regime
- Strong and Tunable Nonlinear Optomechanical Coupling in a Low-Loss System
- Collective dynamics in optomechanical arrays
- Measurement of the quantum zero-point motion of a nanomechanical resonator
- Gently modulating opto-mechanical systems
- Mechanical Resonators for Quantum Optomechanics Experiments at Room Temperature
- Hybrid quantum devices and quantum engineering
- Quantum Optomechanics - throwing a glance
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- Macroscopic Quantum Mechanics: Theory and Experimental Concepts of Optomechanics
- Quantum feedback: theory, experiments, and applications
- Dynamic dissipative cooling of a mechanical oscillator in strong-coupling optomechanics
- Precision measurement of charge number with optomechanically induced transparency
- Dynamic manipulation of mechanical resonators in the high amplitude regime through optical backaction
- Nanotube mechanical resonators with quality factors of up to 5 million
- Observation of non-Markovian micro-mechanical Brownian motion
- Ultralow-Noise SiN Trampoline Resonators for Sensing and Optomechanics
- Quantum-criticality-induced strong Kerr nonlinearities in optomechanical systems
- Minimization of phonon-tunneling dissipation in mechanical resonators
- A 1D Optomechanical crystal with a complete phononic band gap
- Optomechanical sideband cooling of a micromechanical oscillator close to the quantum ground state
- A general procedure for thermomechanical calibration of nano/micro-mechanical resonators
- Mechanical PT symmetry in coupled optomechanical systems
- Electromagnetically Induced Transparency from Two Phonon Processes in Quadratically Coupled Membranes
- Optomechanical transducers for quantum information processing
- Micro-mechanical oscillator ground state cooling via intracavity optical atomic excitations
- Antibunching photons in a cavity coupled to an optomechanical system
- Entanglement of distant optomechanical systems
- Fast ground-state cooling of mechanical resonator with time-dependent optical cavities
- Enhancing Quantum Effects via Periodic Modulations in Optomechanical Systems
- Review of cavity optomechanical cooling
- Pulsed Laser Cooling for Cavity-Optomechanical Resonators
- Cavity optomechanics with ultra-high Q crystalline micro-resonators
- Single-Atom Cavity QED and Opto-Micromechanics
- A chip-scale integrated cavity-electro-optomechanics platform
- Stable macroscopic quantum superpositions
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- Cross-Kerr effect on an optomechanical system
- Phase-noise induced limitations on cooling and coherent evolution in opto-mechanical systems
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- Reservoir engineering and dynamical phase transitions in optomechanical arrays
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- Experimental determination of irreversible entropy production in out-of-equilibrium mesoscopic quantum systems
- Effect of phase noise on the generation of stationary entanglement in cavity optomechanics
- Nonlinear effects in modulated quantum optomechanics
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- Non-adiabatic optomechanical Hamiltonian of a moving dielectric membrane in a cavity
- Amplitude Noise Squeezing in Cavity-Driven Oscillations of a Mechanical Resonator
- Coupling ultracold atoms to mechanical oscillators
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- Nonlinear optomechanics in the stationary regime
- Ground state cooling of a nanomechanical resonator in the weak-confinement regime via quantum interference
- Electromechanically induced absorption in a circuit nano-electromechanical system
- Massive quantum systems as interfaces of quantum mechanics and gravity
- Tunable linear and quadratic optomechanical coupling for a tilted membrane within an optical cavity: theory and experiment
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- Colossal Nernst power factor in topological semimetal NbSb
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- Cooling of mechanical motion with a two level system: the high temperature regime
- Towards Optomechanical Quantum State Reconstruction of Mechanical Motion
- Radiation Pressure Cooling as a Quantum Dynamical Process
- Cold-Atom-Induced Control of an Optomechanical Device
- Single molecule detection of nanomechanical motion
- Three dimensional cooling and detecting of a nanosphere with a single cavity
- Ground-state cooling of an magnomechanical resonator induced by magnetic damping
- Towards all-optical optomechanics: An optical spring mirror
- Optical coupling to nanoscale optomechanical cavities for near quantum-limited motion transduction
- Quantum dynamics of a high-finesse optical cavity coupled with a thin semi-transparent membrane
- Cavity cooling of a mechanical resonator in the presence of two-level-system defects
- Semi-classical dynamics of nano-electromechanical systems
- Optimal limits of cavity optomechanical cooling in the strong coupling regime
- Scattering-Free Optical Levitation of a Cavity Mirror
- Pulsed entanglement of two optomechanical oscillators
- Quantum limited amplification with a nonlinear cavity detector
- Entanglement dynamics in presence of diversity under decohering environments
- Probing macroscopic quantum states with a sub-Heisenberg accuracy
- Energy localization enhanced ground-state cooling of mechanical resonator from room temperature in optomechanics using a gain cavity
- GHz optomechanical resonators with high mechanical Q factor in air
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- Twofold mechanical squeezing in a cavity optomechanical system
- Anomalous dynamic back-action in interferometers
- Mechanically Compliant Grating Reflectors for Optomechanics
- Classical signature of ponderomotive squeezing in a suspended mirror resonator
- Heisenberg-Langevin vs. quantum master equation
- Optomechanics with molecules in a strongly pumped ring cavity
- Cavity Optomechanics with Photonic Bound States in the Continuum
- Phase noise and laser-cooling limits of optomechanical oscillators
- Proposal for a near-field optomechanical system with enhanced linear and quadratic coupling
- Ground state cooling of micromechanical oscillators in the unresolved sideband regime induced by a quantum well
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- Universal Quantum Entanglement between an Oscillator and Continuous Fields
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- Self-Sustained Oscillation and Dynamical Multistability of Optomechanical Systems in the Extremely-Large-Amplitude Regime
- Role of thermal noise in tripartite quantum steering
- Breaking optomechanical cooling limit by two drive fields on a membrane-in-middle system
- Optomechanical Entanglement in the Presence of Laser Phase Noise
- Cavity polariton optomechanics: Polariton path to fully resonant dispersive coupling in optomechanical resonators
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- Solid-state laser refrigeration of a semiconductor optomechanical resonator
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- Achieving ground state and enhancing entanglement by recovering information
- Ground-state cooling the vibrations of suspended carbon-nanotubes with constant electron current
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- Optomechanically-induced-transparency cooling of massive mechanical resonators to the quantum ground state
- Comparing resolved-sideband cooling and measurement-based feedback cooling on an equal footing: analytical results in the regime of ground-state cooling
- Coherence and entanglement of mechanical oscillators mediated by coupling to different baths
- Quantum entanglement of nanocantilevers
- An optomechanical heat engine with feedback-controlled in-loop light
- Spin-phonon interfaces in coupled nanomechanical cantilevers
- Room-temperature steady-state optomechanics entanglement on a chip
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- Kerr-enhanced optomechanical entanglement generation via reservoir design
- Long-time correlated quantum dynamics of phonon cooling
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- Variational treatment of the electromagnetic field in an optical cavity with a moving mirror