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Anderson Localization Of Composite Excitations In Disordered Optomechanical Arrays
(Institute of Physics Publishing, 2017)
Hybrid Confinement Of Optical And Mechanical Modes In A Bullseye Optomechanical Resonator
(Optical Soc AmerWashington, 2017)
Micropillar Resonators for Optomechanics in the Extremely High 19-95-GHz Frequency Range
(American Physical Society, 2017-06)
Strong confinement, in all dimensions, and high mechanical frequencies are highly desirable for quantum optomechanical applications. We show that GaAs/AlAs micropillar cavities fully confine not only photons but also ...
Multiple Quantum Wells for P T -Symmetric Phononic Crystals
(American Physical Society, 2016-11)
We demonstrate that the parity-time symmetry for sound is realized in laser-pumped multiple-quantum-well structures. Breaking of the parity-time symmetry for the phonons with wave vectors corresponding to the Bragg condition ...
Brillouin Optomechanics In Coupled Silicon Microcavities
(Nature Publishing GroupLondon, 2017)
Coherence Properties Of Coupled Optomechanical Cavities
(Optical Society of American (OSA), 2014)
Electrically Driven Microcavity Exciton-Polariton Optomechanics at 20 GHz ELECTRICALLY DRIVEN MICROCAVITY EXCITON-POLARITON ... KUZNETSOV et al.
(2021-04-01)
Microcavity exciton polaritons enable the resonant coupling of excitons and photons to vibrations in the super-high-frequency (SHF, 3-30 GHz) domain. We introduce here a novel platform for coherent SHF optomechanics based ...
Towards GHz-THz cavity optomechanics in DBR-based semiconductor resonators
(Elsevier Science, 2014-06)
Resonators based on acoustic distributed Bragg reflectors (DBRs) were optimized to work in the GHz–THz regime, and grown by molecular beam epitaxy. We show that in structures made of GaAlAs alloys a simultaneous optimal ...
Synchronization of Micromechanical Oscillators Using Light
(Amer Physical SocCollege PkEUA, 2012)
Breaking the optomechanical cooling limit by two drive fields on a membrane-in-the-middle system
(AMER PHYSICAL SOC, 2019)
We present a theoretical scheme for ground-state cooling of a mechanical resonator in a membrane-in-themiddle optomechanical system (OMS) driven by two red-detuned drive fields. The details of dynamical evolution of OMS ...