We theoretically show that laser recoil heating in free-space levitated optomechanics can be arbitrarily suppressed by shining squeezed light onto an optically trapped nanoparticle. The presence of squeezing modifies the quantum electrodynamical light-matter interaction in a way that enables us to control the amount of information that the scattered light carries about a given mechanical degree of freedom. Moreover, we analyze the trade-off between measurement imprecision and back-action noise and show that optical detection beyond the standard quantum limit can be achieved. We predict that, with state-of-the-art squeezed light sources, laser recoil heating can be reduced by at least 60% by squeezing a single Gaussian mode with an appropria...
About a decade ago, optically levitated nanoparticles have been proposed for macroscopic tests of qu...
We consider feedback cooling in a cavityless levitated optomechanics setup, and we investigate the p...
We have designed and implemented a phase–sensitive closed–loop control scheme to engineer the fluctu...
We develop a theory of optomechanical cooling with a squeezed input light field. We show that Stokes...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
We theoretically analyze the motional quantum dynamics of a levitated dielectric sphere interacting ...
Photon number-squeezed states are of significant value in fundamental quantum research and have a wi...
Recently, remarkable advances have been made in coupling a number of high-Q modes of nano-mechanical...
We report on measurements of the photon-induced heating of silica nanospheres levitated in a vacuum ...
Conventional techniques for laser cooling, by coherent scattering off of internal states or through ...
We present the mechanical squeezing of a mg-scale suspended mirror (i.e. a pendulum) near quantum re...
Application of frequency-dependent squeezed vacuum improves the force sensitivity of optomechanical ...
About a decade ago, optically levitated nanoparticles have been proposed for macroscopic tests of qu...
We consider feedback cooling in a cavityless levitated optomechanics setup, and we investigate the p...
We have designed and implemented a phase–sensitive closed–loop control scheme to engineer the fluctu...
We develop a theory of optomechanical cooling with a squeezed input light field. We show that Stokes...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
We experimentally squeeze the thermal motional state of an optically levitated nanosphere by fast sw...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
We demonstrate all-optical sympathetic cooling of a laser-trapped microsphere to sub-Kelvin temperat...
We theoretically analyze the motional quantum dynamics of a levitated dielectric sphere interacting ...
Photon number-squeezed states are of significant value in fundamental quantum research and have a wi...
Recently, remarkable advances have been made in coupling a number of high-Q modes of nano-mechanical...
We report on measurements of the photon-induced heating of silica nanospheres levitated in a vacuum ...
Conventional techniques for laser cooling, by coherent scattering off of internal states or through ...
We present the mechanical squeezing of a mg-scale suspended mirror (i.e. a pendulum) near quantum re...
Application of frequency-dependent squeezed vacuum improves the force sensitivity of optomechanical ...
About a decade ago, optically levitated nanoparticles have been proposed for macroscopic tests of qu...
We consider feedback cooling in a cavityless levitated optomechanics setup, and we investigate the p...
We have designed and implemented a phase–sensitive closed–loop control scheme to engineer the fluctu...