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Optimization design of all-fiber 3 X 3 multiplexer based on an asymmetrical Mach-Zehnder interferometer

机译:基于非对称马赫曾德尔干涉仪的全光纤3 X 3多路复用器的优化设计

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摘要

All-fiber 3 X 3 multiplexer based on an asymmetrical Mach-Zehnder Interferometer has been analyzed theoretically, which is made of a fused planar 3 X 3 and a fused triangular 3 X 3 single mode fiber coupler. The mathematical description is provided. The variation in the channel crosstalk at the output port due to the lateral deviation of the splitting ratios of the couplers are studied. Comparing with the three-fiber 3 X 3 multiplexer using two the triangular 3 X 3 fiber coupler, the reduced sidelobe level of channel of the proposed device is more than 13.6 dB, and the proposed device has better crosstalk characteristics when the same lateral deviation of the power splitting ratio is introduced. Analysis and experiment show that there is a relative high success rate of fabricating an all-fiber 3 X 3 multiplexer by using proposed configuration and design approach. The experiment results are in good agreement with the analytical ones. The result shows that the measured sidelobe level is about -34.6 dB, the insertion loss is less than 1.0 dB and channel isolation is higher than 30 dB, respectively.
机译:从理论上分析了基于非对称Mach-Zehnder干涉仪的全光纤3 X 3多路复用器,它由熔融平面3 X 3和熔融三角3 X 3单模光纤耦合器组成。提供了数学描述。研究了由于耦合器分光比的横向偏差引起的输出端口通道串扰的变化。与使用两个三角形3 X 3光纤耦合器的三光纤3 X 3多路复用器相比,该设备的信道降低的旁瓣电平大于13.6 dB,并且当相同的横向偏移为3时,该设备具有更好的串扰特性。介绍了功率分配比。分析和实验表明,采用建议的配置和设计方法制造全光纤3 X 3多路复用器的成功率较高。实验结果与分析结果吻合良好。结果表明,测得的旁瓣电平约为-34.6 dB,插入损耗小于1.0 dB,通道隔离度大于30 dB。

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