Title :
Monolithic Whispering-Gallery Mode Resonators With Vertically Coupled Integrated Bus Waveguides
Author :
Ghulinyan, Mher ; Guider, Romain ; Pucker, Georg ; Pavesi, Lorenzo
Author_Institution :
Adv. Photonics & Pho tovoltaics Group, Bruno Kessler Found., Trento, Italy
Abstract :
We report on the realization of a silicon-based microresonator/waveguide coupled system, fully integrated on a silicon chip. The device uses a vertical coupling scheme of the resonator and a buried strip waveguide. We demonstrate that its high optical quality follows from the accurate planarization of the waveguide topography, which is achieved by multiple depositions-and-reflows of a borophosphosilicate glass over strip waveguides. More importantly, we demonstrate wafer-scale mass fabrication of freestanding planar resonators suspended in air and coupled to integrated bus waveguides, as well as controlled selective excitation of different mode families of the resonator. This opens the door for the realization of stable all-integrated complex resonator systems for optomechanical and metrological applications, with the potential to substitute today´s intensive use of complicated fiber-taper coupling schemes.
Keywords :
borosilicate glasses; micro-optics; microcavities; micromechanical resonators; optical glass; optical planar waveguides; optical resonators; optical testing; phosphosilicate glasses; silicon-on-insulator; whispering gallery modes; Si; Si-SiO2; borophosphosilicate glass; buried strip waveguide; fiber-taper coupling; freestanding planar resonators; integrated complex resonator systems; metrological applications; monolithic whispering-gallery mode resonators; optical quality; optical testing; optomechanical applications; silicon-based microresonator system; vertically coupled integrated bus waveguides; wafer-scale mass fabrication; waveguide coupled system; waveguide planarization; waveguide topography; Couplings; Optical coupling; Optical resonators; Optical waveguides; Photonics; Planar waveguides; Silicon; Monolithic integration; optical resonator; vertical coupling;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2011.2157487