We analyze the nonlinear dynamics of a high-finesse optical cavity in which one mirror is mounted on a flexible mechanical element. We find that this system is governed by an array of dynamical attractors, which arise from phase locking between the mechanical oscillations of the mirror and the ringing of the light intensity in the cavity. We develop an analytical theory to map out the diagram of attractors in parameter space, derive the slow amplitude dynamics of the system, including thermal fluctuations, and suggest a scheme for exploiting the dynamical multistability in the measurement of small displacements
Optical levitation of mechanical oscillators has been suggested as a promising way to decouple the e...
Radiation pressure can couple the mechanical modes of an optical cavity structure to its optical mod...
The theoretical work of Braginsky predicted that radiation pressure can couple the mechanical, mirro...
We analyze the nonlinear dynamics of a high-finesse optical cavity in which one mirror is mounted on...
We review recent progress in the field of optomechanics, where one studies the effects of radiation ...
Recent experimental progress in table-top experiments or gravitational-wave interferometers has enli...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
A study of the phototermal instabilities in a Fabry-Perot cavity is reported, where one mirror consi...
A study of the phototermal instabilities in a Fabry-Perot cavity is reported, where one mirror consi...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
The topic of this thesis is the theoretical analysis of theoptomechanical coupling effects in a high...
Recent experiments that use radiation pressure in microcavities either to create micro-wave-rate mec...
We analyze experimentally and theoretically mechanical oscillation within an optical cavity stimulat...
Optical levitation of mechanical oscillators has been suggested as a promising way to decouple the e...
Radiation pressure can couple the mechanical modes of an optical cavity structure to its optical mod...
The theoretical work of Braginsky predicted that radiation pressure can couple the mechanical, mirro...
We analyze the nonlinear dynamics of a high-finesse optical cavity in which one mirror is mounted on...
We review recent progress in the field of optomechanics, where one studies the effects of radiation ...
Recent experimental progress in table-top experiments or gravitational-wave interferometers has enli...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
A study of the phototermal instabilities in a Fabry-Perot cavity is reported, where one mirror consi...
A study of the phototermal instabilities in a Fabry-Perot cavity is reported, where one mirror consi...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
The topic of this thesis is the theoretical analysis of theoptomechanical coupling effects in a high...
Recent experiments that use radiation pressure in microcavities either to create micro-wave-rate mec...
We analyze experimentally and theoretically mechanical oscillation within an optical cavity stimulat...
Optical levitation of mechanical oscillators has been suggested as a promising way to decouple the e...
Radiation pressure can couple the mechanical modes of an optical cavity structure to its optical mod...
The theoretical work of Braginsky predicted that radiation pressure can couple the mechanical, mirro...