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High-speed optical modulation based on carrier depletion in a silicon waveguide

Optics Express · 2007 · Vol. 15(2) · pp. 660–660
Ansheng LiuLing LiaoDoron RubinHat NguyenBerkehan ÇiftçioğluYoel ChetritNahum IzhakyMario Paniccia

Abstract

We present a high-speed and highly scalable silicon optical modulator based on the free carrier plasma dispersion effect. The fast refractive index modulation of the device is due to electric-field-induced carrier depletion in a Silicon-on-Insulator waveguide containing a reverse biased pn junction. To achieve high-speed performance, a travelling-wave design is used to allow co-propagation of electrical and optical signals along the waveguide. We demonstrate high-frequency modulator optical response with 3 dB bandwidth of ~20 GHz and data transmission up to 30 Gb/s. Such high-speed data transmission capability will enable silicon modulators to be one of the key building blocks for integrated silicon photonic chips for next generation communication networks as well as future high performance computing applications.

Photonic and Optical DevicesPhotonic Crystals and ApplicationsOptical Network TechnologiesSilicon photonicsModulation (music)Materials scienceWaveguideOptical modulatorOpticsOptoelectronicsSiliconPhotonicsPhotonic integrated circuit
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References
Electrically pumped hybrid AlGaInAs-silicon evanescent laser
Optics Express · 2006 · 1,213 citations
Waveguide Electrooptic Modulators
IEEE Transactions on Microwave Theory and Techniques · 1982 · 518 citations
Electrooptical effects in silicon
IEEE Journal of Quantum Electronics · 1987 · 2,564 citations
Demonstration of a silicon Raman laser
Optics Express · 2004 · 773 citations
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