首页> 外文会议>High-Capacity Optical Networks and Enabling Technologies (HONET), 2009 >Opto-VLSI-based integrated reconfigurable optical add-drop multiplexer with enhanced performance
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Opto-VLSI-based integrated reconfigurable optical add-drop multiplexer with enhanced performance

机译:基于光电-VLSI的集成可重配置光分插复用器,具有增强的性能

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In this paper, we propose a novel integrated reconfigurable optical add-drop multiplexer (RODAM) structure based on using an Opto-VLSI processor and a 4-f imaging system. The 4-f imaging system composed of a fiber array, a lens array and an Opto-VLSI processor can be fabricated on a substrate to form an integrated optical interface. Experiments were implemented to demonstrate the ROADM operations of add-drop multiplexing. Experimental results show a low insertion loss of 6 dB and crosstalk level of no larger than -30.5 dB for the drop and through operation modes. Phase hologram optimization of the Opto-VLSI processor is investigated, for maximizing the number of wavelength channels while keeping adequate insertion loss and crosstalk levels. In addition WDM power equalization is achieved by controlling the maximum phase level of the steering holograms.
机译:在本文中,我们基于使用Opto-VLSI处理器和4-f成像系统,提出了一种新颖的集成式可重配置光分插复用器(RODAM)结构。可以在基板上制造由光纤阵列,透镜阵列和Opto-VLSI处理器组成的4-f成像系统,以形成集成的光学接口。进行实验以演示分插复用的ROADM操作。实验结果表明,对于下降和直通操作模式,插入损耗低至6 dB,串扰水平不大于-30.5 dB。研究了Opto-VLSI处理器的相位全息图优化,以在保持足够的插入损耗和串扰水平的同时最大化波长通道的数量。另外,通过控制转向全息图的最大相位电平,可以实现WDM功率均衡。

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