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Silicon photonic chip for 16-channel wavelength division (de-)multiplexing in the O-band. | LitMetric

AI Article Synopsis

  • A silicon photonic chip that functions as a 16-channel wavelength division multiplexer (WDM) was successfully demonstrated, designed for the O-band.
  • The chip uses advanced features like spectral add-drop filters and modulated perturbations to improve performance by reducing bandwidth and crosstalk.
  • Experiments showed promising results, achieving a low intra-channel crosstalk of approximately -18.9 dB and effective performance with a 10 Gbps data signal, indicating its potential for high-speed data center applications.

Article Abstract

We experimentally demonstrate a silicon photonic chip-scale 16-channel wavelength division multiplexer (WDM) operating in the O-band. The silicon photonic chip consists of a common-input bus waveguide integrated with a sequence of 16 spectral add-drop filters implemented by 4-port contra-directional Bragg couplers and resonant cladding modulated perturbations. The combination of these features reduces the spectral bandwidth of the filters and improves the crosstalk. An apodization of the cladding modulated perturbations between the bus and the add/drop waveguides is used to optimize the strength of the coupling coefficient in the propagation direction to reduce the intra-channel crosstalk on adjacent channels. The fabricated chip was validated experimentally with a measured intra-channel crosstalk of ∼-18.9 dB for a channel spacing of 2.6 nm. The multiplexer/demultiplexer chip was also experimentally tested with a 10 Gbps data waveform. The resulting eye-pattern indicates that this approach is suitable for datacenter WDM-based interconnects in the O-band with large aggregate bandwidths.

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Source
http://dx.doi.org/10.1364/OE.397141DOI Listing

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