The radiation-pressure interaction between one or more laser fields and a mechanical oscillator gives rise to a wide range of phenomena: from sideband cooling and backaction-evading measurements to pondermotive and mechanical squeezing to entanglement and motional sideband asymmetry. In many protocols, such as dissipative mechanical squeezing, multiple lasers are utilized, giving rise to periodically driven optomechanical systems. Here we show that in this case, Floquet dynamics can arise due to presence of Kerr-type nonlinearities, which are ubiqitious in optomechanical systems. Specifically, employing multiple probe tones, we perform sideband asymmetry measurements, a macroscopic quantum effect, on a silicon optomechanical crystal sideban...
While quantum mechanics imposes a fundamental limit on the precision of interferometric measurements...
In this Letter we use resolved sideband laser cooling to cool a mesoscopic mechanical resonator to n...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....
Sideband asymmetry between the Stokes and anti-Stokes scattering is a signature of the mechanical os...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
We review and study the roles of quantum and classical fluctuations in recent cavity-optomechanical ...
We experimentally investigate a mechanical squeezed state realized in a parametrically modulated mem...
Thermal frequency fluctuations in optical cavities limit the sensitivity of precision experiments ra...
We analyze quantum effects occurring in optomechanical systems where the coupling between an optical...
Optomechanical systems exploit the interaction between the optical radiation field and mechanical re...
Backaction-evading measurements of mechanical motion can achieve precision below the zero-point unce...
We create squeezed light by exploiting the quantum nature of the mechanical interaction between lase...
Optomechanical coupling between the motion of a mechanical oscillator and a cavity represents a new ...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
Recent optomechanical experiments have observed nonclassical properties in macroscopic mechanical os...
While quantum mechanics imposes a fundamental limit on the precision of interferometric measurements...
In this Letter we use resolved sideband laser cooling to cool a mesoscopic mechanical resonator to n...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....
Sideband asymmetry between the Stokes and anti-Stokes scattering is a signature of the mechanical os...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
We review and study the roles of quantum and classical fluctuations in recent cavity-optomechanical ...
We experimentally investigate a mechanical squeezed state realized in a parametrically modulated mem...
Thermal frequency fluctuations in optical cavities limit the sensitivity of precision experiments ra...
We analyze quantum effects occurring in optomechanical systems where the coupling between an optical...
Optomechanical systems exploit the interaction between the optical radiation field and mechanical re...
Backaction-evading measurements of mechanical motion can achieve precision below the zero-point unce...
We create squeezed light by exploiting the quantum nature of the mechanical interaction between lase...
Optomechanical coupling between the motion of a mechanical oscillator and a cavity represents a new ...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
Recent optomechanical experiments have observed nonclassical properties in macroscopic mechanical os...
While quantum mechanics imposes a fundamental limit on the precision of interferometric measurements...
In this Letter we use resolved sideband laser cooling to cool a mesoscopic mechanical resonator to n...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....