Submicron silicon waveguide optical switch driven by microelectromechanical actuator
Erdal Bulgan, Yoshiaki Kanamori, Kazuhiro Hane
Abstract
Erdal Bulgan, Yoshiaki Kanamori, Kazuhiro Hane
Abstract
A submicron silicon waveguide optical switch driven by a microelectromechanical actuator is fabricated. The switch is composed of single-mode silicon input and output waveguides and a movable waveguide suspended by silicon springs. Switching occurs when the air gap between input and output waveguides is closed by displacing the movable waveguide 540±20nm by an electrostatic comb actuator. The switch, fabricated on a silicon-on-insulator wafer, is monolithic, and active switching region is as small as about 40×60μm2. An extinction ratio of 15±2dB is experimentally obtained between switch off and on states at 1.55μm wavelength.
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A submicron silicon waveguide optical switch driven by a microelectromechanical actuator is fabricated. The switch is composed of single-mode silicon input and output waveguides and a movable waveguide suspended by silicon springs. Switching occurs when the air gap between input and output waveguides is closed by displacing the movable waveguide 540±20nm by an electrostatic comb actuator. The switch, fabricated on a silicon-on-insulator wafer, is monolithic, and active switching region is as small as about 40×60μm2. An extinction ratio of 15±2dB is experimentally obtained between switch off and on states at 1.55μm wavelength.
Key concepts: Silicon on insulator, Materials science, Comb drive, Waveguide, Extinction ratio, Optical switch, Actuator, Silicon