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Photonic chip based transmitter optimization and receiver demultiplexing of a 1.28 Tbit/s OTDM signal

机译:基于光子芯片的发射机优化和接收机多路分解1.28 Tbit / s OTDm信号

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摘要

We demonstrate chip-based Tbaud optical signal processing for all-optical performance monitoring, switching and demultiplexing based on the instantaneous Kerr nonlinearity in a dispersion-engineered As_2S_3 planar waveguide. At the Tbaud transmitter, we use a THz bandwidth radio-frequency spectrum analyzer to perform all-optical performance monitoring and to optimize the optical time division multiplexing stages as well as mitigate impairments, for example, dispersion. At the Tbaud receiver, we demonstrate error-free demultiplexing of a 1.28 Tbit/s single wavelength, return-to-zero signal to 10 Gbit/s via four-wave mixing with negligible system penalty (0.5 dB). Excellent performance, including high four-wave mixing conversion efficiency and no indication of an error-floor, was achieved. Our results establish the feasibility of Tbaud signal processing using compact nonlinear planar waveguides for Tbit/s Ethernet applications.
机译:我们演示了基于色散设计的As_2S_3平面波导中基于瞬时Kerr非线性的全光学性能监测,切换和解复用的基于芯片的Tbaud光信号处理。在Tbaud发射机上,我们使用THz带宽射频频谱分析仪执行全光性能监控,并优化光时分多路复用级并减轻诸如色散之类的损害。在Tbaud接收机上,我们演示了通过四波混频将1.28 Tbit / s单波长,归零信号恢复为10 Gbit / s的无差错解复用,其系统损失可忽略不计(<0.5 dB)。获得了出色的性能,包括高的四波混频转换效率,并且没有出现误差底限的迹象。我们的结果确定了使用紧凑的非线性平面波导在Tbit / s以太网应用中进行Tbaud信号处理的可行性。

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