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Silicon-based tunable optical delay lines and switches for next generation optical telecommunications

机译:基于硅的可调光延迟线和开关,用于下一代光电信

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We report our recent progress on reconfigurable optical true time delay lines (RTTDL) and optical switches. The RTTDL is composed of 8 stages of MZIs connected by 7 waveguide pairs with an incremental length difference. Variable optical attenuators are inserted in the delay waveguides to suppress crosstalk caused by the residual signals from noise paths. Transmission of a 25 Gbps PRBS signal confirms the signal fidelity after a maximum of 1.27 ns delay. The optical switch is based on a Benes architecture with Mach-Zehnder interferometers (MZI) as the switching elements. Both p-i-n diodes and silicon resistive micro-heaters are integrated in the MZI arms for electrical tuning and phase correction, respectively. The measured on-chip insertion loss of the 4 × 4 switch is < 8 dB. Transmission of a 50 Gb/s quadrature phase shift keying (QPSK) optical signal verifies its switching functionality.
机译:我们报告了我们最近的可重构光学真时延迟线(RTTDL)和光开关的进度。 RTTDL由由7个波导对连接的8个阶段组成,其中7个波导对具有增量长度差异。可变光衰减器插入延迟波导中以抑制由噪声路径的残余信号引起的串扰。 25 Gbps PRBS信号的传输在最多1.27ns延迟后确认信号保真度。光开关基于具有Mach-Zehnder干涉仪(MZI)的Benes架构作为开关元件。 P-I-N二极管和硅电阻微加热器都集成在MZI臂中,分别用于电动调谐和相位校正。测量的4×4开关的片上插入损耗<8 dB。传输50 Gb / s正交相移键控(QPSK)光信号验证其切换功能。

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