Abstract—We describe and experimentally demonstrate an optomechanical oscillator where light drives a surface mechanical mode of a spherical resonator, using a combination of photoelastic scattering and optical electrostriction. These oscillators are shown to have discretely-selectable frequencies ranging from 50 MHz to 1.5 GHz on a single silica microsphere device. We also report on initial measurements of phase noise and continuous frequency tuning of these oscillators. I
Mechanical resonators have been used for the last few decades as the frequency selection element of ...
The realization of photonic microwave oscillators using optomechanical cavities has recently become ...
The recent observation on radiation-pressure-driven self-sustained oscillation in high-Q optical mic...
Abstract—We describe and experimentally demonstrate an optomechanical oscillator where light drives ...
We develop a miniaturized electrostatically tunable optomechanical oscillator, whose frequencies can...
We develop a miniaturized electrostatically tunable optomechanical oscillator, whose frequencies can...
The radiation pressure of the large circulating optical power inside micro-scale high quality factor...
Cavity Optomechanical oscillators (OMOs) rely upon photon radiation pressure to induce harmonic mech...
University of Minnesota Ph.D. dissertation. January 2016. Major: Physics. Advisor: Mo Li. 1 computer...
We demonstrate a new class of fused silica MEMS that bridge between optomechanical and fluidic micro...
Reference oscillators are ubiquitous elements used in almost every electronics system today. The nee...
In this work we show that a silicon optomechanical crystal cavity can be used as an optomechanical o...
We calculate optomechanically excited Love waves on the surface of a silica whispering-gallery micro...
We present a silicon optomechanical nanobeam design with a dynamically tunable acoustic mode at 10.2...
We show operation of a silicon MEMS based narrow-band optical modulator with large modulation depth ...
Mechanical resonators have been used for the last few decades as the frequency selection element of ...
The realization of photonic microwave oscillators using optomechanical cavities has recently become ...
The recent observation on radiation-pressure-driven self-sustained oscillation in high-Q optical mic...
Abstract—We describe and experimentally demonstrate an optomechanical oscillator where light drives ...
We develop a miniaturized electrostatically tunable optomechanical oscillator, whose frequencies can...
We develop a miniaturized electrostatically tunable optomechanical oscillator, whose frequencies can...
The radiation pressure of the large circulating optical power inside micro-scale high quality factor...
Cavity Optomechanical oscillators (OMOs) rely upon photon radiation pressure to induce harmonic mech...
University of Minnesota Ph.D. dissertation. January 2016. Major: Physics. Advisor: Mo Li. 1 computer...
We demonstrate a new class of fused silica MEMS that bridge between optomechanical and fluidic micro...
Reference oscillators are ubiquitous elements used in almost every electronics system today. The nee...
In this work we show that a silicon optomechanical crystal cavity can be used as an optomechanical o...
We calculate optomechanically excited Love waves on the surface of a silica whispering-gallery micro...
We present a silicon optomechanical nanobeam design with a dynamically tunable acoustic mode at 10.2...
We show operation of a silicon MEMS based narrow-band optical modulator with large modulation depth ...
Mechanical resonators have been used for the last few decades as the frequency selection element of ...
The realization of photonic microwave oscillators using optomechanical cavities has recently become ...
The recent observation on radiation-pressure-driven self-sustained oscillation in high-Q optical mic...