Calibration-Free Silicon Photonic Non-Blocking 6 × 6 Mach-Zehnder Switch
Moderate-scale silicon photonic Mach-Zehnder switches (MZSs) are important for small-scale optical telecom network nodes and photonic/optical network-on-chip (NoC) for multicore processor architectures. However, conventional elementary MZS designs are prone to size variations in the fabrication proc...
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Veröffentlicht in: | Journal of lightwave technology 2024-04, Vol.42 (7), p.2422-2428 |
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Sprache: | eng |
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Zusammenfassung: | Moderate-scale silicon photonic Mach-Zehnder switches (MZSs) are important for small-scale optical telecom network nodes and photonic/optical network-on-chip (NoC) for multicore processor architectures. However, conventional elementary MZS designs are prone to size variations in the fabrication processes, resulting in considerable random phase imbalance between the two arms. Based on our previous work, we have further demonstrated a new calibration-free elementary 2 × 2 MZS design with widened multimode arm waveguides, which features improved tapered Euler S-bends (TES-bends) with bent asymmetric directional couplers (ADCs) to suppress the random phase imbalance and higher-order modes within an ultra-compact footprint. With 12 of such elementary MZSs cascaded in 5 stages, we have demonstrated a calibration-free non-blocking 6 × 6 MZS with optimized Spanke-Benes topology. Fabricated with standard 180-nm silicon photonic foundry processes, the 6 × 6 MZS features low excess loss of 1-3.5 dB and low crosstalk of |
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ISSN: | 0733-8724 1558-2213 |
DOI: | 10.1109/JLT.2023.3337321 |