Light, sound, and microwave are important tools for many interdisciplinary applications in a multi-physical environment, and they usually are inefficient to be detected simultaneously in the same physical platform. However, at the microscopic scale, these waves can unexpectedly interact with the same microstructure through resonant enhancement, making it a unique hybrid micro-system for new applications across multiple physical channels. Here we experimentally demonstrate an optomechanical microdevice based on Brillouin lasing operation in an optical microcavity as a sensitive unit to sense external light, sound, and microwave signals in the same platform. These waves can induce modulations to the microcavity Brillouin laser (MBL) in a reso...
Although bolometric- and ponderomotive-induced deflection of device boundaries are widely used for l...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
University of Minnesota Ph.D. dissertation. January 2016. Major: Physics. Advisor: Mo Li. 1 computer...
Cavity quantum optomechanics is a field of investigation which studies the interaction between optic...
Achieving cavity-optomechanical strong coupling with high-frequency phonons provides a rich avenue f...
Abstract In this chapter we introduce the concept of Brillouin optomechanics, a phonon-photon intera...
To date, microscale and nanoscale optomechanical systems have enabled many proof-of-principle quantu...
Optical resonators are the basis of any experiment where it is desirable to confine light. The most ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Brillouin scattering is the scattering of light from sound waves in a medium. There are three waves ...
Thesis (Ph.D.)--University of Washington, 2020Brillouin scattering is the inelastic light-sound inte...
The radiation pressure of the large circulating optical power inside micro-scale high quality factor...
Ultralow-noise yet tunable lasers are a revolutionary tool in precision spectroscopy, displacement m...
So far, Brillouin scattering and cavity optomechanics have been mostly disconnected branches of rese...
International audienceWe report Brillouin lasing in a monofluoride crystalline resonator for the ver...
Although bolometric- and ponderomotive-induced deflection of device boundaries are widely used for l...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
University of Minnesota Ph.D. dissertation. January 2016. Major: Physics. Advisor: Mo Li. 1 computer...
Cavity quantum optomechanics is a field of investigation which studies the interaction between optic...
Achieving cavity-optomechanical strong coupling with high-frequency phonons provides a rich avenue f...
Abstract In this chapter we introduce the concept of Brillouin optomechanics, a phonon-photon intera...
To date, microscale and nanoscale optomechanical systems have enabled many proof-of-principle quantu...
Optical resonators are the basis of any experiment where it is desirable to confine light. The most ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Brillouin scattering is the scattering of light from sound waves in a medium. There are three waves ...
Thesis (Ph.D.)--University of Washington, 2020Brillouin scattering is the inelastic light-sound inte...
The radiation pressure of the large circulating optical power inside micro-scale high quality factor...
Ultralow-noise yet tunable lasers are a revolutionary tool in precision spectroscopy, displacement m...
So far, Brillouin scattering and cavity optomechanics have been mostly disconnected branches of rese...
International audienceWe report Brillouin lasing in a monofluoride crystalline resonator for the ver...
Although bolometric- and ponderomotive-induced deflection of device boundaries are widely used for l...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
University of Minnesota Ph.D. dissertation. January 2016. Major: Physics. Advisor: Mo Li. 1 computer...