Optical microresonators are essential to a broad range of technologies and scientific disciplines. However, many of their applications rely on discrete devices to attain challenging combinations of ultra-low-loss performance (ultrahigh Q) and resonator design requirements. This prevents access to scalable fabrication methods for photonic integration and lithographic feature control. Indeed, finding a microfabrication bridge that connects ultrahigh-Q device functions with photonic circuits is a priority of the microcavity field. Here, an integrated resonator having a record Q factor over 200 million is presented. Its ultra-low-loss and flexible cavity design brings performance to integrated systems that has been the exclusive domain of discr...
We describe techniques that enable fabrication of free UH-Q silica microtoroids. Preliminary results...
International audienceMicrocavities consisting of two identical tapered mirrors etched into silicon-...
We describe techniques that enable fabrication of a new class of photonic devices based on free UH-Q...
Optical microresonators are essential to a broad range of technologies and scientific disciplines. H...
Optical microresonators are essential to a broad range of technologies and scientific disciplines. H...
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...
Silicon technology provided a concrete basis of the integrated microelectronics revolution, and it m...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
We report on the design and performance of high-Q integrated optical micro-trench cavities on silico...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
Optical resonators with Q values of nearly 1 billion are demonstrated, the highest for any chip-base...
Multiple applications of relevance in photonics, such as spectrally efficient coherent communication...
International audienceMicrocavities consisting of two identical tapered mirrors etched into silicon-...
Chip-scale nonlinear optics can provide important new functions in communications, frequency metrolo...
We describe techniques that enable fabrication of free UH-Q silica microtoroids. Preliminary results...
International audienceMicrocavities consisting of two identical tapered mirrors etched into silicon-...
We describe techniques that enable fabrication of a new class of photonic devices based on free UH-Q...
Optical microresonators are essential to a broad range of technologies and scientific disciplines. H...
Optical microresonators are essential to a broad range of technologies and scientific disciplines. H...
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...
Silicon technology provided a concrete basis of the integrated microelectronics revolution, and it m...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
We report on the design and performance of high-Q integrated optical micro-trench cavities on silico...
We demonstrate microfabrication of ultra-high-Q microcavities on a chip, exhibiting a novel toroid-s...
Optical resonators with Q values of nearly 1 billion are demonstrated, the highest for any chip-base...
Multiple applications of relevance in photonics, such as spectrally efficient coherent communication...
International audienceMicrocavities consisting of two identical tapered mirrors etched into silicon-...
Chip-scale nonlinear optics can provide important new functions in communications, frequency metrolo...
We describe techniques that enable fabrication of free UH-Q silica microtoroids. Preliminary results...
International audienceMicrocavities consisting of two identical tapered mirrors etched into silicon-...
We describe techniques that enable fabrication of a new class of photonic devices based on free UH-Q...