Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising from the radiation pressure interaction between a localized optical cavity at lambda(c) = 1542 nm and a mechanical resonance at omega(m)/2 pi = 3.72 GHz. At a temperature of T-b approximate to 10 K, highly nonlinear driving of mechanical motion is observed via continuous wave optical pumping. Introduction of a time-dependent (modulated) optical pump is used to steer the system towards an otherwise inaccessible dynamically stable attractor in which mechanical self-oscillation occurs for an optical pump red detuned from the cavity resonance. An analytical model incorporating thermo-optic effects due to optical absorption heating is developed and ...
We analyze experimentally and theoretically mechanical oscillation within an optical cavity stimulat...
Optical forces in guided-wave nanostructures have recently been proposed as an effective means of me...
We report on the optomechanical properties of a breathing mechanical mode oscillating at 5.5 GHz in ...
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...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
Recent experiments that use radiation pressure in microcavities either to create micro-wave-rate mec...
We review recent progress in the field of optomechanics, where one studies the effects of radiation ...
We analyze the nonlinear dynamics of a high-finesse optical cavity in which one mirror is mounted on...
Optical measurements of a nanoscale silicon optomechanical crystal cavity with a mechanical resonanc...
Optical measurements of a nanoscale silicon optomechanical crystal cavity with a mechanical resonanc...
Optical measurements of a nanoscale silicon optomechanical crystal cavity with a mechanical resonanc...
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...
We analyze experimentally and theoretically mechanical oscillation within an optical cavity stimulat...
Optical forces in guided-wave nanostructures have recently been proposed as an effective means of me...
We report on the optomechanical properties of a breathing mechanical mode oscillating at 5.5 GHz in ...
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...
Utilizing a silicon nanobeam optomechanical crystal, we investigate the attractor diagram arising fr...
Recent experiments that use radiation pressure in microcavities either to create micro-wave-rate mec...
We review recent progress in the field of optomechanics, where one studies the effects of radiation ...
We analyze the nonlinear dynamics of a high-finesse optical cavity in which one mirror is mounted on...
Optical measurements of a nanoscale silicon optomechanical crystal cavity with a mechanical resonanc...
Optical measurements of a nanoscale silicon optomechanical crystal cavity with a mechanical resonanc...
Optical measurements of a nanoscale silicon optomechanical crystal cavity with a mechanical resonanc...
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...
We analyze experimentally and theoretically mechanical oscillation within an optical cavity stimulat...
Optical forces in guided-wave nanostructures have recently been proposed as an effective means of me...
We report on the optomechanical properties of a breathing mechanical mode oscillating at 5.5 GHz in ...