Heterogeneous Silicon Photonic Integrated Circuits

Гетерогенные кремниевые фотонические интегральные схемы
John E. Bowers, Christos T. Santis, Eric J. Stanton, Tin Komljenović, Michael L. Davenport, Sudharsanan Srinivasan, Jared Hulme, Alan Y. Liu, Alexander Spott, Chong Zhang
2015-08-13

III/V componentsheterogeneous silicon photonicsphotonic interconnectssilicon photonic integrated circuits
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.
1
Active silicon photonic integrated circuits could have substantial impact on interconnects, telecommunications, sensors, and silicon electronics.
2
Heterogeneous silicon photonics has demonstrated performance that significantly outperforms native III/V components.
3
Recent breakthroughs in silicon photonic technology and components have advanced silicon photonic integrated circuits.

Heterogeneous silicon photonic integrated circuits

Recent performance breakthroughs and impacts of heterogeneous silicon photonic technology and components compared to native III/V components, and their potential effects on interconnects, telecommunications, sensors, and silicon electronics

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2015-08-13
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Authors
John E. Bowers
Christos T. Santis
Eric J. Stanton
Tin Komljenović
Michael L. Davenport
Sudharsanan Srinivasan
Jared Hulme
Alan Y. Liu
Alexander Spott
Chong Zhang
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