The circulation of light within dielectric volumes enables storage of optical power near specific resonant frequencies and is important in a wide range of fields including cavity quantum electrodynamics, photonics, biosensing and nonlinear optics. Optical trajectories occur near the interface of the volume with its surroundings, making their performance strongly dependent upon interface quality. With a nearly atomic-scale surface finish, surface-tension-induced microcavities such as liquid droplets or spheres are superior to all other dielectric microresonant structures when comparing photon lifetime or, equivalently, cavity Q factor. Despite these advantageous properties, the physical characteristics of such systems are not easily controll...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
The ability to tune resonant frequency in optical microcavities is an essential feature for many app...
The circulation of light within dielectric volumes enables storage of optical power near specific re...
The circulation of light within dielectric volumes enables storage of optical power near specific re...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
Optical microcavities confine light spatially and temporally and find application in a wide range of...
On-chip high-Q microcavities possess significant potential in terms of integration of optical micror...
Optical microcavities confine light spatially and temporally and find application in a wide range of...
We present microfabrication of ultra-high-Q microcavities on a chip. These toroidal microcavities po...
We present microfabrication of ultra-high-Q microcavities on a chip. These toroidal microcavities po...
Optical resonators with quality factor as high as 750 million are demonstrated. These silicon-chip-b...
Optical resonators with quality factor as high as 750 million are demonstrated. These silicon-chip-b...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
The ability to tune resonant frequency in optical microcavities is an essential feature for many app...
The circulation of light within dielectric volumes enables storage of optical power near specific re...
The circulation of light within dielectric volumes enables storage of optical power near specific re...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
Optical microcavities confine light spatially and temporally and find application in a wide range of...
On-chip high-Q microcavities possess significant potential in terms of integration of optical micror...
Optical microcavities confine light spatially and temporally and find application in a wide range of...
We present microfabrication of ultra-high-Q microcavities on a chip. These toroidal microcavities po...
We present microfabrication of ultra-high-Q microcavities on a chip. These toroidal microcavities po...
Optical resonators with quality factor as high as 750 million are demonstrated. These silicon-chip-b...
Optical resonators with quality factor as high as 750 million are demonstrated. These silicon-chip-b...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
Ultrahigh-Q optical resonators are being studied across a wide range of fields, including quantum in...
The ability to tune resonant frequency in optical microcavities is an essential feature for many app...