The interaction of the radiation pressure with micro-mechanical oscillators is earning a growing interest for its wide-range applications (including high sensitivity measurements of force and position) and for fundamental research (entanglement, ponderomotive squeezing, quantum non-demolition measurements). In this contribution we describe the fabrication of a family of opto-mechanical devices specifically designed to ease the detection of ponderomotive squeezing and of entanglement between macroscopic objects and light. These phenomena are not easily observed, due to the overwhelming effects of classical noise sources of thermal origin with respect to the weak quantum fluctuations of the radiation pressure. Therefore, a low thermal noise b...
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
We present a very sensitive optical measurement of the mechanical fluctuations of a micro-mirror in ...
Recent experiments that use radiation pressure in microcavities either to create micro-wave-rate mec...
The interaction of the radiation pressure with micro-mechanical oscillators is earning a growing int...
We present an oscillating micromirror with mechanical quality factors Q up to 1.2×106 at cryogenic t...
We present an oscillating micromirror with mechanical quality factors Q up to 1.2×106 at cryogenic t...
Generating non-classical states of light by opto-mechanical coupling depends critically on the mecha...
Generating nonclassical states of light by optomechanical coupling depends critically on the mechani...
We present the fabrication and characterization of opto-mechanical micro-resonators developed to det...
We report on the mechanical losses measured in a "low-deformation mirror" micro-oscillator designed ...
We report on the mechanical losses measured in a “low-deformation mirror” micro-oscillator designed ...
We experimentally demonstrate the high-sensitivity optical monitoring of moving micromirrors, made o...
Optomechanical systems offer a potential platform for testing quantum effects in relatively massive ...
We experimentally demonstrate the high-sensitivity optical monitoring of a micro-mechanical resonato...
We present a very sensitive optical measurement of the mechanical vibrations of a micro-mirror inser...
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
We present a very sensitive optical measurement of the mechanical fluctuations of a micro-mirror in ...
Recent experiments that use radiation pressure in microcavities either to create micro-wave-rate mec...
The interaction of the radiation pressure with micro-mechanical oscillators is earning a growing int...
We present an oscillating micromirror with mechanical quality factors Q up to 1.2×106 at cryogenic t...
We present an oscillating micromirror with mechanical quality factors Q up to 1.2×106 at cryogenic t...
Generating non-classical states of light by opto-mechanical coupling depends critically on the mecha...
Generating nonclassical states of light by optomechanical coupling depends critically on the mechani...
We present the fabrication and characterization of opto-mechanical micro-resonators developed to det...
We report on the mechanical losses measured in a "low-deformation mirror" micro-oscillator designed ...
We report on the mechanical losses measured in a “low-deformation mirror” micro-oscillator designed ...
We experimentally demonstrate the high-sensitivity optical monitoring of moving micromirrors, made o...
Optomechanical systems offer a potential platform for testing quantum effects in relatively massive ...
We experimentally demonstrate the high-sensitivity optical monitoring of a micro-mechanical resonato...
We present a very sensitive optical measurement of the mechanical vibrations of a micro-mirror inser...
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
We present a very sensitive optical measurement of the mechanical fluctuations of a micro-mirror in ...
Recent experiments that use radiation pressure in microcavities either to create micro-wave-rate mec...