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Inverse design and demonstration of a compact on-chip narrowband three-channel wavelength demultiplexer

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arxiv 1709.08809 v1 pith:PEYPYKCX submitted 2017-08-17 physics.app-ph physics.optics

Inverse design and demonstration of a compact on-chip narrowband three-channel wavelength demultiplexer

classification physics.app-ph physics.optics
keywords splitterswavelengthcrosstalkdemultiplexerdesigninsertioninverselarge
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In wavelength division multiplexing (WDM) schemes, splitters must be used to combine and separate different wavelengths. Conventional splitters are fairly large with footprints in hundreds to thousands of square microns, and experimentally-demonstrated MMI-based and inverse-designed ultra-compact splitters operate with only two channels and large channel spacing ($>$100 nm). Here we inverse design and experimentally demonstrate a three-channel wavelength demultiplexer with 40 nm spacing (1500 nm, 1540 nm, and 1580 nm) with a footprint of 24.75 $\mu\mathrm{m}^2$. The splitter has a simulated peak insertion loss of -1.55 dB with under -15 dB crosstalk and a measured peak insertion loss of -2.29 dB with under -10.7 dB crosstalk.

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