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Chalcogenide glass photonic integration for improved 2  μm optical interconnection

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In this work, on-chip chalcogenide glass photonic integrations with several fundamental photonic building blocks are designed and fabricated based on the As2S3 platform for improved 2 μm optical interconnection, achieving a… Click to show full abstract

In this work, on-chip chalcogenide glass photonic integrations with several fundamental photonic building blocks are designed and fabricated based on the As2S3 platform for improved 2 μm optical interconnection, achieving a broadened wavelength bandwidth and improved fabrication tolerance. A 600 nm thick As2S3 strip waveguide has low propagation loss of 1.447 dB/cm at 2 μm. Broadband vertical coupling is realized by a grating coupler with 4.3 dB coupling loss. A Bragg grating filter, power splitter, Mach–Zander interferometer, and mode converter for on-chip mode division multiplexing (MDM) are also reported at 2 μm with reliable performances. Finally, a record high MDM optical interconnection capacity of 3×80  Gbps at 2 μm is experimentally demonstrated based on the proposed As2S3 chip, drawing promising prospects for future photonic integration and high-speed interconnection at the 2 μm waveband.

Keywords: interconnection; photonic integration; improved optical; chalcogenide glass; glass photonic; optical interconnection

Journal Title: Photonics Research
Year Published: 2020

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