Cavity optoelectromechanical regenerative amplification is demonstrated. An optical cavity enhances mechanical transduction, allowing sensitive measurement even for heavy oscillators. A 27.3 MHz mechanical mode of a microtoroid was linewidth narrowed to 6.6 ± 1.4 mHz, 30 times smaller than previously achieved with radiation pressure driving in such a system. These results may have applications in areas such as ultrasensitive optomechanical mass spectroscop
Cavity optomechanics is a rapidly evolving field operating at the intersection of solid-state physic...
Here we use the parametric instability induced by radiation pressure in ultra high Q optical microca...
The field of cavity optomechanics is reviewed. This field explores the interaction between electroma...
Opto-electromechanical regenerative amplification is demonstrated in a microtoroid. Mechanical linew...
Cavity optomechanics explores the interaction between optical field and mechanical motion. So far, t...
Cavity optomechanics explores the interaction between optical field and mechanical motion. So far, t...
International audienceMechanical losses lower than 10-9 have been demonstrated on quartz crystal aco...
International audienceMechanical losses lower than 10−9 have been demonstrated on quartz crystal aco...
International audienceMechanical losses lower than 10−9 have been demonstrated on quartz crystal aco...
International audienceMechanical losses lower than 10−9 have been demonstrated on quartz crystal aco...
High-gain and low-noise signal amplification is a valuable tool in various cryogenic microwave exper...
Parametric instability of an optomechanical system occurs when radiation pressure is strong enough t...
High-gain and low-noise signal amplication is a valuable tool in various cryogenic microwave experim...
The field of cavity optomechanics is reviewed. This field explores the interaction between electroma...
The radiation pressure of the large circulating optical power inside micro-scale high quality factor...
Cavity optomechanics is a rapidly evolving field operating at the intersection of solid-state physic...
Here we use the parametric instability induced by radiation pressure in ultra high Q optical microca...
The field of cavity optomechanics is reviewed. This field explores the interaction between electroma...
Opto-electromechanical regenerative amplification is demonstrated in a microtoroid. Mechanical linew...
Cavity optomechanics explores the interaction between optical field and mechanical motion. So far, t...
Cavity optomechanics explores the interaction between optical field and mechanical motion. So far, t...
International audienceMechanical losses lower than 10-9 have been demonstrated on quartz crystal aco...
International audienceMechanical losses lower than 10−9 have been demonstrated on quartz crystal aco...
International audienceMechanical losses lower than 10−9 have been demonstrated on quartz crystal aco...
International audienceMechanical losses lower than 10−9 have been demonstrated on quartz crystal aco...
High-gain and low-noise signal amplification is a valuable tool in various cryogenic microwave exper...
Parametric instability of an optomechanical system occurs when radiation pressure is strong enough t...
High-gain and low-noise signal amplication is a valuable tool in various cryogenic microwave experim...
The field of cavity optomechanics is reviewed. This field explores the interaction between electroma...
The radiation pressure of the large circulating optical power inside micro-scale high quality factor...
Cavity optomechanics is a rapidly evolving field operating at the intersection of solid-state physic...
Here we use the parametric instability induced by radiation pressure in ultra high Q optical microca...
The field of cavity optomechanics is reviewed. This field explores the interaction between electroma...