Cavity cooling of an optically trapped nanoparticle
arXiv:0910.1221 · doi:10.1103/PhysRevA.81.023826
Abstract
We study the cooling of a dielectric nanoscale particle trapped in an optical cavity. We derive the frictional force for motion in the cavity field, and show that the cooling rate is proportional to the square of oscillation amplitude and frequency. Both the radial and axial centre-of-mass motion of the trapped particle, which are coupled by the cavity field, are cooled. This motion is analogous to two coupled but damped pendulums. Our simulations show that the nanosphere can be cooled to 1/e of its initial momentum over time scales of hundredths of milliseconds.
11 pages
References in corpus (4)
Cited by in corpus (99)
- Cavity Optomechanics
- Cold atoms in cavity-generated dynamical optical potentials
- Motional Quantum Ground State of a Levitated Nanoparticle from Room Temperature
- Biological measurement beyond the quantum limit
- Millikelvin cooling of an optically trapped microsphere in vacuum
- Large Quantum Superpositions and Interference of Massive Nanometer-Sized Objects
- Testing the limits of quantum mechanical superpositions
- Levitodynamics: Levitation and control of microscopic objects in vacuum
- Cavity cooling of an optically levitated nanoparticle
- Cavity cooling a single charged nanoparticle
- Optomechanics with Levitated Particles
- Quantum Optomechanics - throwing a glance
- Quantum Superposition of Massive Objects and Collapse Models
- Optically Levitating Dielectrics in the Quantum Regime: Theory and Protocols
- Macroscopic quantum states: measures, fragility and implementations
- Matter Wave Interferometry of a Levitated Thermal Nano-Oscillator Induced and Probed by a Spin
- Optomechanics of Levitated Dielectric Particles
- Nonlinear dynamics and millikelvin cavity-cooling of levitated nanoparticles
- An all-optical nanomechanical heat engine
- Free Nano-Object Ramsey Interferometry for Large Quantum Superpositions
- Large Quantum Delocalization of a Levitated Nanoparticle using Optimal Control: Applications for Force Sensing and Entangling via Weak Forces
- Pulsed Laser Cooling for Cavity-Optomechanical Resonators
- On-chip quantum interference of a superconducting microsphere
- Quantum Magnetomechanics with Levitating Superconducting Microspheres
- Quantum rotations of nanoparticles
- Nonlinear multi-frequency phonon lasers with active levitated optomechanics
- Acceleration sensing with magnetically levitated oscillators above a superconductor
- Testing Wavefunction Collapse Models using Parametric Heating of a Trapped Nanosphere
- Electron spin resonance from NV centers in diamonds levitating in an ion trap
- Two-dimensional quantum motion of a levitated nanosphere
- Massive quantum systems as interfaces of quantum mechanics and gravity
- Doppler cooling a microsphere
- An ultra-narrow line width levitated nano-oscillator for testing dissipative wavefunction collapse
- Discriminating the effects of collapse models from environmental diffusion with levitated nanospheres
- Direct loading of nanoparticles under high vacuum into a Paul trap for levitodynamical experiments
- Coherent Inflation for Large Quantum Superpositions of Microspheres
- Ro-Translational Cavity Cooling of Dielectric Rods and Disks
- Testing collapse models with levitated nanoparticles: the detection challenge
- Towards all-optical optomechanics: An optical spring mirror
- Cooling nanorotors by elliptic coherent scattering
- Master equation approach to optomechanics with arbitrary dielectrics
- Ultrasensitive Inertial and Force Sensors with Diamagnetically Levitated Magnets
- Optical trapping and control of nanoparticles inside evacuated hollow core photonic crystal fibers
- Quantum experiments with microscale particles
- Dynamics of levitated nanospheres: towards the strong coupling regime
- Cavity Optomechanics in a Levitated Helium Drop
- Out-of-equilibrium Thermodynamics of Quantum Optomechanical Systems
- Feedback control in quantum optics: an overview of experimental breakthroughs and areas of application
- Levitated cavity optomechanics in high vacuum
- Optomechanical cooling of levitated spheres with doubly-resonant fields
- Entangling levitated nanoparticles by coherent scattering
- Quantum cooling and squeezing of a levitating nanosphere via time-continuous measurements
- Levitated electromechanics: all-electrical cooling of charged nano- and micro-particles
- Quantum displacement sensing and cooling in 3D levitated cavity optomechanics
- Auxiliary-cavity-assisted ground-state cooling of optically levitated nanosphere in the unresolved-sideband regime
- Collapse Models: a theoretical, experimental and philosophical review
- Spin-mechanics with nitrogen-vacancy centers and trapped particles
- Coherent scattering 2D cooling in levitated cavity optomechanics
- Probing anharmonicity of a quantum oscillator in an optomechanical cavity
- Characterisation of a charged particle levitated nano-oscillator
- Quadratic optomechanical cooling of a cavity-levitated nanosphere
- Tolerance in the Ramsey interference of a trapped nanodiamond
- Performance and limits of feedback cooling methods for levitated oscillators: a direct comparison
- Optimal Cooling of Multiple Levitated Particles through Far-Field Wavefront-Shaping
- Probing Spontaneous Wave-Function Collapse with Entangled Levitating Nanospheres
- Enhanced continuous generation of non-Gaussianity through optomechanical modulation
- Nanoparticle detection in an open-access silicon microcavity
- Near-field Levitated Quantum Optomechanics with Nanodiamonds
- Decoherence-Free Rotational Degrees of Freedom for Quantum Applications
- Performance of a radiatively cooled system for quantum optomechanical experiments in space
- Constraining modified gravity with quantum optomechanics
- Stroboscopic high-order nonlinearity for quantum optomechanics
- Time evolution of coupled multimode and multiresonator optomechanical systems
- Internal Quantum Dynamics of a Nanoparticle in a Thermal Electromagnetic Field: a Minimal Model
- Optimal Cooling of Multiple Levitated Particles: Theory of Far-Field Wavefront-Shaping
- Levitated optomechanics with a fiber Fabry-Perot interferometer
- Transfer of a levitating nanoparticle between optical tweezers
- Damping and non-linearity of a levitating magnet in rotation above a superconductor
- Landau levels in a gravitational field: The Schwarzschild spacetime case
- On optical forces in spherical whispering gallery mode resonators
- Comparing cavity and ordinary laser cooling within the Lamb-Dicke regime
- Optical Tweezers: A Comprehensive Tutorial from Calibration to Applications
- Electric trapping and circuit cooling of charged nanorotors
- Coupling rotational and translational motion via a continuous measurement in an optomechanical sphere
- A Quantum Spectrometer for Arbitrary Noise
- Optically Hyperpolarized Materials for Levitated Optomechanics
- Non-Hermitian physics of levitated nanoparticle array
- Quantum Electrodynamics with a Nonmoving Dielectric Sphere: Quantizing Lorenz-Mie Scattering
- Temporal oscillations of light transmission through dielectric microparticles subjected to optically induced motion
- Simultaneous ground-state cooling of two levitated nanoparticles by coherent scattering
- Neuromorphic detection and cooling of microparticles in arrays
- Optical Cooling Using the Dipole Force
- Cavity cooling of atoms: Within and without a cavity
- Meissner levitation of a millimeter size neodymium magnet within a superconducting radio frequency cavity
- Nanoparticle acts as a light source to make atom interferometers
- Probing millicharged particles with ultrasensitive optical nonlinear sensor based on levitated cavity optomechanics
- High Finesse Cavity with Anapole-Assisted Resonant Subwavelength Particle Mirror
- Vectorial polaritons in the quantum motion of a levitated nanosphere
- Sympathetic Cooling of Levitated Optomechanics through Nonreciprocal Coupling