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Updated: Jun 18, 2026

Fabrication and Testing of Microfluidic Optomechanical Oscillators
Published on: May 29, 2014
Large tuning of birefringence in two strip silicon waveguides via optomechanical motion
Jing Ma1, Michelle L Povinelli
1Ming Hsieh Department of Electrical Engineering, University of Southern California, Powell Hall of Engineering, 3737 Watt Way, Los Angeles, CA 90089-0271, USA. ingm@usc.edu
Abstract:
We present an optomechanical method to tune phase and group birefringence in parallel silicon strip waveguides. We first calculate the deformation of suspended, parallel strip waveguides due to optical forces. We optimize the frequency and polarization of the pump light to obtain a 9 nm deformation for an optical power of 20 mW. Widely tunable phase and group birefringence can be achieved by varying the pump power, with maximum values of 0.026 and 0.13, respectively. The giant phase birefringence allows linear to circular polarization conversion within 30 microm for a pump power of 67 mW. The group birefringence gives a tunable differential group delay of 6fs between orthogonal polarizations. We also evaluate the tuning performance of waveguides with different cross sections.

