2015Journal of Lightwave TechnologyRequires access

Heterogeneous Silicon Photonic Integrated Circuits

Tin Komljenović, Michael L. Davenport, Jared Hulme, Alan Y. Liu, Christos T. Santis, Alexander Spott, Sudharsanan Srinivasan, Eric J. Stanton, Chong Zhang, John E. Bowers

Open publisher page 315 citations

Abstract

We review recent breakthroughs in the silicon photonic technology and components, and describe progress in silicon photonic integrated circuits. Heterogeneous silicon photonics has recently demonstrated performance that significantly outperforms native III/V components. The impact active silicon photonic integrated circuits could have on interconnects, telecommunications, sensors, and silicon electronics is reviewed.

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What this paper is about

We review recent breakthroughs in the silicon photonic technology and components, and describe progress in silicon photonic integrated circuits. Heterogeneous silicon photonics has recently demonstrated performance that significantly outperforms native III/V components. The impact active silicon photonic integrated circuits could have on interconnects, telecommunications, sensors, and silicon electronics is reviewed.

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OpenAlex reports 315 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We review recent breakthroughs in the silicon photonic technology and components, and describe progress in silicon photonic integrated circuits. Heterogeneous silicon photonics has recently demonstrated performance that significantly outperforms native III/V components. The impact active silicon photonic integrated circuits could have on interconnects, telecommunications, sensors, and silicon electronics is reviewed.

Key concepts: Silicon photonics, Photonics, Photonic integrated circuit, Silicon, Hybrid silicon laser, Electronic circuit, Electronics, Materials science

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