We demonstrate the use of a compound optical cavity as linear displacement detector, by measuring the thermal motion of a silicon nitride suspended membrane acting as the external mirror of a nearinfrared Littrow laser diode. Fluctuations in the laser optical power induced by the membrane vibrations are collected by a photodiode integrated within the laser, and then measured with a spectrum analyzer. The dynamics of the membrane driven by a piezoelectric actuator is investigated as a function of air pressure and actuator displacement in a homodyne configuration. The high Q-factor (~3.4·104 at 8.3·10−3mbar) of the fundamental mechanical mode at ~73kHz guarantees a detection sensitivity high enough for direct measurement of thermal motion at ...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
The optomechanical handling of objects with dimensions from nanoscale to mascroscopic scale is a ver...
We demonstrate the use of a compound optical cavity as linear displacement detector, by measuring th...
Extraneous thermal motion can limit displacement sensitivity and radiation pressure effects, such as...
Thermal frequency fluctuations in optical cavities limit the sensitivity of precision experiments ra...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
We review and study the roles of quantum and classical fluctuations in recent cavity-optomechanical ...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
By dispersively coupling a dielectric membrane to an optical cavity, we laser-cooled it from 294K to...
This thesis focuses on fast and sensitive readout of mechanical motion to answer questions in the fo...
We investigate the optomechanical properties of an optical cavity containing, as a mirror, a multila...
We study the non-linear dynamics of a multimode optomechanical system constituted of a driven high-f...
We present the results of theoretical and experimental studies of dispersively coupled (or 'membrane...
In this thesis we study (theoretically and experimentally) various aspects of the classical and quan...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
The optomechanical handling of objects with dimensions from nanoscale to mascroscopic scale is a ver...
We demonstrate the use of a compound optical cavity as linear displacement detector, by measuring th...
Extraneous thermal motion can limit displacement sensitivity and radiation pressure effects, such as...
Thermal frequency fluctuations in optical cavities limit the sensitivity of precision experiments ra...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
We review and study the roles of quantum and classical fluctuations in recent cavity-optomechanical ...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
By dispersively coupling a dielectric membrane to an optical cavity, we laser-cooled it from 294K to...
This thesis focuses on fast and sensitive readout of mechanical motion to answer questions in the fo...
We investigate the optomechanical properties of an optical cavity containing, as a mirror, a multila...
We study the non-linear dynamics of a multimode optomechanical system constituted of a driven high-f...
We present the results of theoretical and experimental studies of dispersively coupled (or 'membrane...
In this thesis we study (theoretically and experimentally) various aspects of the classical and quan...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
The optomechanical handling of objects with dimensions from nanoscale to mascroscopic scale is a ver...