2016Unpublished venueRequires access

Heterogeneous photonic integration on silicon

John E. Bowers

Open publisher page 10 citations

Abstract

We review recent advances in heterogeneous silicon photonic integration technology and components and describe progress in silicon photonic integrated circuits. Techniques for laser integration and the impact of active silicon photonic integrated circuits could have on interconnects, telecommunications and silicon electronics are reviewed. A variety of materials are being heterogeneously integrated, including arsenides for short wavelength lasers, phosphides for infrared lasers, LiNbO3for nonlinear applications and YIG for isolators and circulators.

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What this paper is about

We review recent advances in heterogeneous silicon photonic integration technology and components and describe progress in silicon photonic integrated circuits. Techniques for laser integration and the impact of active silicon photonic integrated circuits could have on interconnects, telecommunications and silicon electronics are reviewed. A variety of materials are being heterogeneously integrated, including arsenides for short wavelength lasers, phosphides for infrared lasers, LiNbO3for nonlinear applications and YIG for isolators and circulators.

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Available abstract

We review recent advances in heterogeneous silicon photonic integration technology and components and describe progress in silicon photonic integrated circuits. Techniques for laser integration and the impact of active silicon photonic integrated circuits could have on interconnects, telecommunications and silicon electronics are reviewed. A variety of materials are being heterogeneously integrated, including arsenides for short wavelength lasers, phosphides for infrared lasers, LiNbO3for nonlinear applications and YIG for isolators and circulators.

Key concepts: Photonics, Photonic integrated circuit, Silicon photonics, Silicon, Hybrid silicon laser, Optoelectronics, Materials science, Integrated circuit

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