Title :
Waveguide-coupled Square Micropillar Resonator-based Devices: Channel Filters and Electro-optic Switches with Embedded p-i-n Diodes
Author :
Li, Chao ; Zhou, Linjie ; Poon, Andrew W.
Author_Institution :
Dept. of Electr. & Electron. Eng., Hong Kong Univ. of Sci. & Technol.
Abstract :
We report our numerical calculations and initial experiments on waveguide-coupled square micropillar resonator-based devices. Our calculations using two-dimensional finite-difference time-domain simulations and Fourier analysis show that waveguide coupling to a micropillar with a long flat coupling sidewall enables desirable directional wavevectors in the micropillar, and thus potentially gives rise to preferentially coupled modes in waveguide-coupled large-size square micropillar resonators. Our initial experiments on silicon-based waveguide-coupled large-size square micropillar resonator-based filters, with tailored cavity corners, reveal only 2-3 modes. We also experimentally demonstrate injection-type square micropillar resonator-based silicon electro-optic switches using laterally integrated p-i-n diodes across the entire square microcavity. By applying a 4 V forward-bias driving voltage, we obtain a resonance wavelength blueshift of ~0.54 nm. We measure the device bandwidth to be about 2 MHz, primarily limited by a wide intrinsic region
Keywords :
Fourier analysis; cavity resonators; electro-optical switches; finite difference time-domain analysis; integrated optics; integrated optoelectronics; micro-optics; microcavities; optical filters; optical resonators; optical waveguides; p-i-n diodes; silicon; 2 MHz; Fourier analysis; Si; channel filters; coupled modes; directional wavevectors; electrooptic switches; finite-difference time-domain simulations; flat coupling sidewall; injection-type micropillar resonator; p-i-n diodes; resonance wavelength blueshift; resonator-based filters; silicon-based resonator; square micropillar resonator; waveguide coupling; waveguide-coupled resonator; Analytical models; Coupled mode analysis; Electrooptic devices; Finite difference methods; Microcavities; P-i-n diodes; Resonator filters; Silicon; Switches; Time domain analysis; electro-optic device; p-i-n diode; square micropillar resonator; waveguide-coupled;
Conference_Titel :
Transparent Optical Networks, 2006 International Conference on
Conference_Location :
Nottingham
Print_ISBN :
1-4244-0235-2
Electronic_ISBN :
1-4244-0236-0
DOI :
10.1109/ICTON.2006.248525