We study the cavity mode frequencies of a Fabry–Pérot cavity containing two vibrating dielectric membranes. We derive the equations for the mode resonances and provide approximate analytical solutions for them as a function of the membrane positions, which act as an excellent approximation when the relative and center-of-mass position of the two membranes are much smaller than the cavity length. With these analytical solutions, one finds that extremely large optomechanical coupling of the membrane relative motion can be achieved in the limit of highly reflective membranes when the two membranes are placed very close to a resonance of the inner cavity formed by them. We also study the cavity finesse of the system and verify that, under the c...
We present the results of theoretical and experimental studies of dispersively coupled (or 'membrane...
Multi–element systems of micro/nano–mechanical resonators offer promising prospects for enhanced opt...
We theoretically study an optomechanical system which consists of a two-sided cavity and a mechanica...
We study the cavity mode frequencies of a Fabry–Pérot cavity containing two vibrating dielectric mem...
We study the optomechanical behaviour of a driven Fabry–Pérot cavity containing two vibrating dielec...
We study theoretically and experimentally the behavior of an optomechanical system where two vibrati...
In this thesis we study (theoretically and experimentally) various aspects of the classical and quan...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
We present an optomechanical multi-mode system where two Si3N4 membranes are placed inside a driven ...
We present an experimental study of an optomechanical system formed by a vibrating thin semi-transpa...
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...
Multi–element systems of micro/nano–mechanical resonators offer promising prospects for enhanced opt...
We theoretically study an optomechanical system which consists of a two-sided cavity and a mechanica...
We study the cavity mode frequencies of a Fabry–Pérot cavity containing two vibrating dielectric mem...
We study the optomechanical behaviour of a driven Fabry–Pérot cavity containing two vibrating dielec...
We study theoretically and experimentally the behavior of an optomechanical system where two vibrati...
In this thesis we study (theoretically and experimentally) various aspects of the classical and quan...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
In this paper, we review the linear and non-linear dynamics of an optomechanical system made of a tw...
We present an optomechanical multi-mode system where two Si3N4 membranes are placed inside a driven ...
We present an experimental study of an optomechanical system formed by a vibrating thin semi-transpa...
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...
Multi–element systems of micro/nano–mechanical resonators offer promising prospects for enhanced opt...
We theoretically study an optomechanical system which consists of a two-sided cavity and a mechanica...