We present the results of theoretical and experimental studies of dispersively coupled (or 'membrane in the middle') optomechanical systems. We calculate the linear optical properties of a high finesse cavity containing a thin dielectric membrane. We focus on the cavity's transmission, reflection and finesse as a function of the membrane's position along the cavity axis and as a function of its optical loss. We compare these calculations with measurements and find excellent agreement in cavities with empty-cavity finesses in the range 10(4)-10(5). The imaginary part of the membrane's index of refraction is found to be similar to 10(-4). We calculate the laser cooling performance of this system, with a particular focus on the less-intuitive ...
Multi–element systems of micro/nano–mechanical resonators offer promising prospects for enhanced opt...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
We present an experimental study of dynamical back-action cooling of the fundamental vibrational mod...
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...
We study theoretically and experimentally the behavior of an optomechanical system where two vibrati...
We study the optomechanical behaviour of a driven Fabry–Pérot cavity containing two vibrating dielec...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
In cavity optomechanics, nonlinear interactions between an optical field and a mechanical resonator ...
We study the cavity mode frequencies of a Fabry-Pérot cavity containing two vibrating dielectric mem...
In the field of cavity optomechanics, we have gained a great deal of control over mechanical systems...
We present an experimental study of an optomechanical system formed by a vibrating thin semi-transpa...
By dispersively coupling a dielectric membrane to an optical cavity, we laser-cooled it from 294K to...
We theoretically study an optomechanical system which consists of a two-sided cavity and a mechanica...
Cavity optomechanics studies the interaction between mechanical resonators and optical cavities thro...
Multi–element systems of micro/nano–mechanical resonators offer promising prospects for enhanced opt...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
We present an experimental study of dynamical back-action cooling of the fundamental vibrational mod...
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...
We study theoretically and experimentally the behavior of an optomechanical system where two vibrati...
We study the optomechanical behaviour of a driven Fabry–Pérot cavity containing two vibrating dielec...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
In cavity optomechanics, nonlinear interactions between an optical field and a mechanical resonator ...
We study the cavity mode frequencies of a Fabry-Pérot cavity containing two vibrating dielectric mem...
In the field of cavity optomechanics, we have gained a great deal of control over mechanical systems...
We present an experimental study of an optomechanical system formed by a vibrating thin semi-transpa...
By dispersively coupling a dielectric membrane to an optical cavity, we laser-cooled it from 294K to...
We theoretically study an optomechanical system which consists of a two-sided cavity and a mechanica...
Cavity optomechanics studies the interaction between mechanical resonators and optical cavities thro...
Multi–element systems of micro/nano–mechanical resonators offer promising prospects for enhanced opt...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
We present an experimental study of dynamical back-action cooling of the fundamental vibrational mod...