Broadband ultra-compact polarization splitter–rotator using diagonally overlapped bi-layer architecture

A broadband and ultra-compact polarization splitter–rotator based on diagonally overlapped bi-layer architecture and an asymmetrical directional coupler is proposed on a silicon-on-insulator platform. By leveraging the structure over supermode theory, a 1-dB bandwidth of 220 nm, extinction ratio (ER...

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Veröffentlicht in:Applied optics (2004) 2022-09, Vol.61 (27), p.8064-8071
Hauptverfasser: Chung, Kuo-Fang, Shih, Yuan-Ting, Ma, Yi-Ren, Shih, Tien-Tsorng, Huang, Ding-Wei
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Sprache:eng
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Zusammenfassung:A broadband and ultra-compact polarization splitter–rotator based on diagonally overlapped bi-layer architecture and an asymmetrical directional coupler is proposed on a silicon-on-insulator platform. By leveraging the structure over supermode theory, a 1-dB bandwidth of 220 nm, extinction ratio (ER) of < 19 d B , and cross talk (XT) of < − 15.85 d B within the span of 1400–1700 nm and coupling length of 4.62 µm are achieved. In addition, T M 0 − T E 0 conversion loss of ∼ 0.19 d B , ER of 35.88 dB, and XT of − 30.46 d B can be obtained at 1550 nm. The fabrication tolerances are also analyzed, indicating that the insertion losses remain below 1 dB over 1460–1620 nm in terms of width errors and layer-to-layer misalignments within ± 10 n m . The results show that the proposed device is very suitable to utilize between fibers and for polarization diversity of on-chip systems for broadband operation as well as ultra-compact integration.
ISSN:1559-128X
2155-3165
1539-4522
DOI:10.1364/AO.470750