Laser Cooling of a Nanomechanical Oscillator to Its Zero-Point Energy.
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- Type
- article
- Published
- 2019-03-25
- Cited by
- 68
- References
- 73
- Access
- Open access
- OpenAlex
- https://openalex.org/W3021303712
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:209501057
Keywords
Sideband, Physics, Laser cooling, Resolved sideband cooling, Zero-point energy
References
- Optomechanical crystals
- Squeezing of Quantum Noise of Motion in a Micromechanical Resonator.
- Pulsed excitation dynamics of an optomechanical crystal resonator near its quantum ground-state of motion
- Observation of quantum motion of a nanomechanical resonator.
- Optomechanical creation of magnetic fields for photons on a lattice
- Entangling Mechanical Motion with Microwave Fields
- Silicon optomechanical crystal resonator at millikelvin temperatures
- Arbitrarily large steady-state bosonic squeezing via dissipation
- Radiation-pressure cooling and optomechanical instability of a micromirror
- Sideband cooling of micromechanical motion to the quantum ground state
- Cavity Optomechanics: Back-Action at the Mesoscale
- Optimized optomechanical crystal cavity with acoustic radiation shield
- Back-action evasion and squeezing of a mechanical resonator using a cavity detector
- Carrier and thermal dynamics of silicon photonic resonators at cryogenic temperatures.
- Strong Optomechanical Squeezing of Light
- Trapping of Atoms by Resonance Radiation Pressure
- Observation of Radiation Pressure Shot Noise on a Macroscopic Object
- Analysis of Lattice Thermal Conductivity
- Nobel Lecture: The manipulation of neutral particles
- Quantum simulations with trapped ions
Cited by
- Two-dimensional optomechanical crystal cavity with high quantum cooperativity
- Stroboscopic quantum optomechanics
- Detecting Nonclassical Correlations in Levitated Cavity Optomechanics
- Quantum sensing with nanoparticles for gravimetry: when bigger is better
- Quantum motion of a squeezed mechanical oscillator attained via an optomechanical experiment
- Quantum proportional-integral (PI) control
- Cavity optomechanics with a laser-engineered optical trap
- Quantum limit cycles and the Rayleigh and van der Pol oscillators
- Cavity optomechanics assisted by optical coherent feedback
- Quantum simulation of a three-mode optomechanical system based on the Fredkin-type interaction
- Can the zero-point energy of the quantized harmonic oscillator be lower? Possible implications for the physics of "dark energy" and "dark matter"
- Domino cooling of a coupled mechanical-resonator chain via cold-damping feedback
- Quantum control of a nanoparticle optically levitated in cryogenic free space
- Sympathetic cooling of a radio-frequency LC circuit to its ground state in an optoelectromechanical system
- Coherent phonon-mediated dynamics for an addressable transducer of coupled micro-mechanical resonators
- Normal Mode Splitting in a Cavity Optomechanical System with a Cubic Anharmonic Oscillator
- Energy-level attraction and heating-resistant cooling of mechanical resonators with exceptional points
- Quantum physics in space
- Non-classical mechanical states guided in a phononic waveguide
- Accelerated ground-state cooling of an optomechanical resonator via shortcuts to adiabaticity
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