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Demonstration of the feasibility of large-port-count optical switching using a hybrid Mach-Zehnder interferometer-semiconductor optical amplifier switch module in a recirculating loop

机译:演示在循环回路中使用混合Mach-Zehnder干涉仪-半导体光放大器开关模块进行大端口数光开关的可行性

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For what we believe is the first time, the feasibility of large-port-count nanosecond-reconfiguration-time optical switches is demonstrated using a hybrid approach, where Mach-Zehnder interferometric (MZI) switches provide low-loss, high-speed routing with short semiconductor optical amplifiers (SOAs) being integrated to enhance extinction. By repeatedly passing signals through a monolithic hybrid dilated 2×2 switch module in a recirculating loop, the potential performance of high-port-count switches using the hybrid approach is demonstrated. Experimentally, a single pass switch penalty of only 0.1 dB is demonstrated for the 2×2 module, while even after seven passes through the switch, equivalent to a 128 × 128 router, a penalty of only 2.4 dB is recorded at a data rate of 10 Gb/s.
机译:对于我们认为这是第一次,使用混合方法论证了大端口数纳秒级重新配置时间光开关的可行性,其中马赫曾德尔干涉仪(MZI)开关提供了低损耗,高速路由和集成了短半导体光放大器(SOA)以增强消光效果。通过在循环回路中使信号反复通过单片混合膨胀2×2开关模块,展示了使用混合方法的高端口数开关的潜在性能。在实验上,对于2×2模块,单通道开关损耗仅为0.1 dB,而即使经过7次开关后,相当于128×128路由器,在数据速率为2时记录的损耗仅为2.4 dB。 10 Gb /秒

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