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Updated: Jun 3, 2026

Fabrication and Testing of Microfluidic Optomechanical Oscillators
Published on: May 29, 2014
Scaling behavior of oscillations arising in delay-coupled optoelectronic oscillators
Lucas Illing1, Greg Hoth, Lauren Shareshian
1Department of Physics, Reed College, Portland, Oregon 27708, USA. illing@reed.edu
Abstract:
We study the effect of asymmetric coupling strengths on the onset of oscillations in delay-coupled nonlinear systems. Our experiment consists of two wide-band optoelectronic devices that are cross-coupled. We find that oscillations appear in the system when the product of the two coupling strengths exceeds a critical value. Beyond the oscillation threshold, the oscillation amplitudes grow smoothly and we find a scaling law that describes the dependence of the amplitude on the coupling strengths. The observations are in good agreement with predictions from linear stability analysis and normal form theory.
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