Micro- and nanoscale optical or microwave cavities are used in a wide range of classical applications and quantum science experiments, ranging from precision measurements, laser technologies to quantum control of mechanical motion. The dissipative photon loss via absorption, present to some extent in any optical cavity, is known to introduce thermo-optical effects and thereby impose fundamental limits on precision measurements. Here, we theoretically and experimentally reveal that such dissipative photon absorption can result in quantum feedback via in-loop field detection of the absorbed optical field, leading to the intracavity field fluctuations to be squashed or antisquashed. Strikingly, this modifies the optical cavity susceptibility i...
Optomechanical coupling between a light field and the motion of a cavity mirror via radiation pressu...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
Micro- and nanoscale optical or microwave cavities are used in a wide range of classical application...
Dissipative optomechanics studies the coupling of the motion of an optical element to the decay rate...
Dissipative optomechanics studies the coupling of the motion of an optical element to the decay rate...
Engineered dissipation can be used for quantum state preparation. This is achieved with a suitably e...
We have designed and implemented a phase–sensitive closed–loop control scheme to engineer the fluctu...
The coherent transduction of information between microwave and optical domains is a fundamental buil...
In this work, we combine the large per-photon optical gradient force with the sensitive feedback of ...
We present a quantum-mechanical theory of the cooling of a cantilever coupled via radiation pressure...
It has been predicted and experimentally demonstrated that by injecting squeezed light into an optom...
A significant challenge in the development of chip-scale cavity-optomechanical devices as testbeds f...
A significant challenge in the development of chip-scale cavity-optomechanical devices as testbeds f...
We present a detailed study of how phase-sensitive feedback schemes can be used to improve the perfo...
Optomechanical coupling between a light field and the motion of a cavity mirror via radiation pressu...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
Micro- and nanoscale optical or microwave cavities are used in a wide range of classical application...
Dissipative optomechanics studies the coupling of the motion of an optical element to the decay rate...
Dissipative optomechanics studies the coupling of the motion of an optical element to the decay rate...
Engineered dissipation can be used for quantum state preparation. This is achieved with a suitably e...
We have designed and implemented a phase–sensitive closed–loop control scheme to engineer the fluctu...
The coherent transduction of information between microwave and optical domains is a fundamental buil...
In this work, we combine the large per-photon optical gradient force with the sensitive feedback of ...
We present a quantum-mechanical theory of the cooling of a cantilever coupled via radiation pressure...
It has been predicted and experimentally demonstrated that by injecting squeezed light into an optom...
A significant challenge in the development of chip-scale cavity-optomechanical devices as testbeds f...
A significant challenge in the development of chip-scale cavity-optomechanical devices as testbeds f...
We present a detailed study of how phase-sensitive feedback schemes can be used to improve the perfo...
Optomechanical coupling between a light field and the motion of a cavity mirror via radiation pressu...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...