First silicon 64×100 GHz WDM filter realized via ring-MZI cascade achieving 3.2±1.1 dB insertion loss and ≥10.7 dB isolation.
Silicon Photonic CWDM Filter with Compact Footprint, Low Loss, Flat-Top Transmission and High Yield
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abstract
A novel silicon photonic CWDM filter design is proposed and experimentally demonstrated. The design has achieved flat-top transmission across all dies on a wafer, with a device footprint of 48*25 {\mu}m2, an insertion loss of 0.24 $\pm$ 0.18 dB, and a channel central wavelength standard deviation of 0.77 nm.
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physics.optics 1years
2026 1verdicts
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Silicon Ring Based 64$\times$100 GHz Wavelength Division Multiplexing filter
First silicon 64×100 GHz WDM filter realized via ring-MZI cascade achieving 3.2±1.1 dB insertion loss and ≥10.7 dB isolation.