Numerical investigation of polarization insensitive two-mode division (De)multiplexer based on an asymmetric directional coupler

We propose a polarization insensitive two-mode division (de)multiplexer based on a silicon-on-insulator platform operating with a broadband, low insertion and scattering loss, and small crosstalk. By using an asymmetric directional coupler, two-mode (de)multiplexing functions for both polarization T...

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Veröffentlicht in:Photonics and nanostructures 2017-02, Vol.23, p.50-57
Hauptverfasser: Truong, Cao Dung, Trinh, M. Tuan, Dang, Hoai Bac, Nguyen, Van Tho
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Sprache:eng
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Zusammenfassung:We propose a polarization insensitive two-mode division (de)multiplexer based on a silicon-on-insulator platform operating with a broadband, low insertion and scattering loss, and small crosstalk. By using an asymmetric directional coupler, two-mode (de)multiplexing functions for both polarization TE and TM states can be realized by the numerical simulation. Simulated results using a three dimensional beam propagation method (3D-BPM) incorporated with an effective index method (EIM) show high performance of the device with an operation efficiency above 81.2% (i.e., insertion loss is less than 0.9dB) in the range of ±5nm around the central wavelength of 1550nm. Fabrication tolerances also have proved suitability to current manufacture technologies for the planar waveguides. Besides a low scattering loss of the sidewall roughness and a little influence of dispersion, a small footprint can bring the device to applications of high bitrate and compact on-chip silicon photonic integrated circuits.
ISSN:1569-4410
1569-4429
DOI:10.1016/j.photonics.2016.12.001