Microtoroid cavities with ultra high Q-factor have been fabricated using a combined process of photolithography and reflow technique for observing non-linear effects such as generation of new frequency components. For this purpose SiO2 material was used to form the toroidal cavity shape, and chalcogenide material of As2S3 maintaining very high nonlinear refractive index was thermally evaporated on top with varying thicknesses. Simulation results of the fabricated structure have exhibited new frequency components around the excitation window of 1520 nm produced by non-linear interactions. ©2008 IEEE
Production of chalcogenide (As2Se3) microresonators in sphere, loop, and bottle morphologies by the ...
Optical microresonators with high quality (Q) factors are essential to a wide range of integrated ph...
On-chip high-Q microcavities possess significant potential in terms of integration of optical micror...
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...
We investigate the resonance structure and modal properties of chip-based toroidal microcavities. Th...
High-yield production and on-chip integration of high-Q chalcogenide microresonators with various si...
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...
The circulation of light within dielectric volumes enables storage of optical power near specific re...
Cataloged from PDF version of article.High-yield production and on-chip integration of high-Q chalco...
A controllable and reversible transition between parametric and Raman oscillations in an ultrahigh-Q...
Cataloged from PDF version of article.We report laser action from a toroidal microcavity coated with...
Optical microcavities confine light spatially and temporally and find application in a wide range of...
Stimulated Raman scattering (SRS) in ultrahigh-Q (UHQ) surface-tension-induced spherical and chip-ba...
Production of chalcogenide (As2Se3) microresonators in sphere, loop, and bottle morphologies by the ...
Optical microresonators with high quality (Q) factors are essential to a wide range of integrated ph...
On-chip high-Q microcavities possess significant potential in terms of integration of optical micror...
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...
We investigate the resonance structure and modal properties of chip-based toroidal microcavities. Th...
High-yield production and on-chip integration of high-Q chalcogenide microresonators with various si...
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...
The circulation of light within dielectric volumes enables storage of optical power near specific re...
Cataloged from PDF version of article.High-yield production and on-chip integration of high-Q chalco...
A controllable and reversible transition between parametric and Raman oscillations in an ultrahigh-Q...
Cataloged from PDF version of article.We report laser action from a toroidal microcavity coated with...
Optical microcavities confine light spatially and temporally and find application in a wide range of...
Stimulated Raman scattering (SRS) in ultrahigh-Q (UHQ) surface-tension-induced spherical and chip-ba...
Production of chalcogenide (As2Se3) microresonators in sphere, loop, and bottle morphologies by the ...
Optical microresonators with high quality (Q) factors are essential to a wide range of integrated ph...
On-chip high-Q microcavities possess significant potential in terms of integration of optical micror...