Abstract: We experimentally demonstrate thermo-optic locking of a semiconductor laser to an integrated toroidal optical microcavity. The lock is maintained for time periods exceeding twelve hours, without requiring any electronic control systems. Fast control is achieved by optical feedback induced by scattering centers within the microcavity, with thermal locking due to optical heating maintaining constructive interference between the cavity and the laser. Furthermore, the optical feedback acts to narrow the laser linewidth, with ultra high quality microtoroid resonances offering the potential for ultralow linewidth on-chip lasers
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
We demonstrate locking of an on-chip, high-Q toroidal-cavity to a pump laser using two, distinct met...
We demonstrate locking of an on-chip, high-Q toroidal-cavity to a pump laser using two, distinct met...
We demonstrate the use of silica based microtoroids as a wavelength-selective optical feedback eleme...
Ultrashort pulsed lasers, operating through the phenomenon of mode-locking, have had a significant r...
Ultrashort pulsed lasers, operating through the phenomenon of mode-locking, have had a significant r...
Ultrashort pulsed lasers, operating through the phenomenon of mode-locking, have had a significant r...
Spectrally pure semiconductor lasers produced via self-injection locking to high quality factor mono...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
Cavity optoelectromechanical systems combine the benefits of ultrasensitive motion transduction and ...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
We demonstrate locking of an on-chip, high-Q toroidal-cavity to a pump laser using two, distinct met...
We demonstrate locking of an on-chip, high-Q toroidal-cavity to a pump laser using two, distinct met...
We demonstrate the use of silica based microtoroids as a wavelength-selective optical feedback eleme...
Ultrashort pulsed lasers, operating through the phenomenon of mode-locking, have had a significant r...
Ultrashort pulsed lasers, operating through the phenomenon of mode-locking, have had a significant r...
Ultrashort pulsed lasers, operating through the phenomenon of mode-locking, have had a significant r...
Spectrally pure semiconductor lasers produced via self-injection locking to high quality factor mono...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
We demonstrate feedback-control of a thermally actuated silicon microring resonator integrating a tr...
Cavity optoelectromechanical systems combine the benefits of ultrasensitive motion transduction and ...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...
Bistable microlasers in a broad-area vertical-cavity semiconductor laser with frequency-selective fe...