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Ultra-high-speed transmission of polymer-based multimode interference devices for board-level high-throughput optical interconnects

机译:用于基于聚合物的多模干扰装置的超高速传输,用于板级高吞吐量光学互连

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Multimode interference (MMI) devices operating at high data rates are important for integrated optics and optical networks. Their 1?N splitting provides a basic functionality in these applications. Ultra-high speed data transmission at 40Gb/s per channel with a total bandwidth of 320Gb/s for all 8 output ports is demonstrated for the first time on a 1 ? 8 photo-definable polymer-based MMI power splitter. The transmission integrity is confirmed by the bit-error-rate (BER) testing. To further determine the speed limitations of MMI devices, ultra-short pulse response of these devices is quantified. For example, for 20fs Gaussian input pulses into a 1?8 polymer-based MMI splitter, the output pulses are severely degraded in coupling efficiency (47%) and completely broken up in time and in space primarily due to inter-modal and intra-modal (waveguide) dispersions.
机译:在高数据速率下操作的多模干扰(MMI)设备对于集成光学和光网络非常重要。他们的1?n拆分在这些应用中提供了基本功能。对于所有8个输出端口的320gB / s的总带宽为320gB / s的超高速度数据传输是第一次在1个输出端口进行演示? 8个基于照片可定义的聚合物的MMI电源分配器。通过误码率(BER)测试确认传输完整性。为了进一步确定MMI器件的速度限制,量化这些设备的超短脉冲响应。例如,对于20FS高斯输入脉冲进入1?8个基于聚合物的MMI分离器,输​​出脉冲以耦合效率(47%)严重降低,并在时间和空间中完全分解,主要是由于跨跨和内部 - 模态(波导)分散体。

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