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January 1, 2006Optics Express258 citationsOpen Access

Self-induced optical modulation of the transmission through a high-Q silicon microdisk resonator

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TJThomas J. JohnsonMBMatthew BorselliOPOskar Painter

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Abstract

Direct time-domain observations are reported of a low-power, self-induced modulation of the transmitted optical power through a high-Q silicon microdisk resonator. Above a threshold input power of 60 microW the transmission versus wavelength deviates from a simple optical bistability behavior, and the transmission intensity becomes highly oscillatory in nature. The transmission oscillations are seen to consist of a train of sharp transmission dips of width approximately 100 ns and period close to 1 micros. A model of the system is developed incorporating thermal and free-carrier dynamics, and is compared to the observed behavior. Good agreement is found, and the self-induced optical modulation is attributed to a nonlinear interaction between competing free-carrier and phonon populations within the microdisk.

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Cite This Study

Johnson et al. (2006) studied this question.

synapsesocial.com/papers/69d7ca41f39344339dd18536https://doi.org/10.1364/opex.14.000817
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