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Interferometric crosstalk-free optical add/drop multiplexer using Mach-Zehnder-based fiber gratings

机译:使用基于Mach-Zehnder的光纤光栅的无干涉无串扰光分插复用器

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摘要

Mach-Zehnder interferometers with fiber Bragg gratings (MZ-FG) are investigated as promising devices for wavelength-selectable optical add-and-drop multiplexers (OADM). A wavelength reused OADM performance is demonstrated for the first time to our knowledge in a six-channel, 10 Gb/s WDM experiment using a single-stage MZ-FG. We discuss both theoretically and experimentally the interferometric crosstalk induced by imperfect Bragg-reflectivity. Two methods are proposed to solve the interferometric crosstalk issues. The first one is wavelength offset scheme. It is experimentally confirmed that there is no interference when the wavelength of crosstalk is away from that of the signal at least two times of bit-rate. In order to separate each wavelength, the master-slave wavelength control method is proposed with Fabry-Perot interferometer made of a set of fiber gratings. The second one is a cascaded MZ-FG scheme eliminating the crosstalk itself. The calculation indicates that a Bragg-reflectivity of only 93% can suppress the crosstalk to be -35 dB. Cascaded MZ-FG's have been fabricated to show that the interferometric crosstalk can be successfully reduced to -50 dB for the add signal, and -71 dB for the drop signal, respectively. The eight-wavelength 10 Gb/s OADM experiment is carried out to demonstrate the low interferometric crosstalk performance.
机译:具有光纤布拉格光栅的Mach-Zehnder干涉仪(MZ-FG)被研究为用于波长可选光学分插复用器(OADM)的有前途的设备。据我们所知,使用单级MZ-FG的六通道10 Gb / s WDM实验首次证明了波长复用的OADM性能。我们在理论上和实验上都讨论了由于布拉格反射率不理想而引起的干涉串扰。提出了两种方法来解决干涉串扰问题。第一个是波长偏移方案。实验证明,当串扰的波长与信号的波长至少相差两倍的比特率时,就没有干扰。为了分离每个波长,提出了由一组光纤光栅构成的法布里-珀罗干涉仪的主从波长控制方法。第二个是消除串扰本身的级联MZ-FG方案。计算表明,只有93%的布拉格反射率可以将串扰抑制为-35 dB。级联的MZ-FG已被制造出来,显示出干涉信号的串扰可以分别成功地减小到添加信号的-50 dB和下降信号的-71 dB。进行了八波长10 Gb / s OADM实验,以证明低干涉串扰性能。

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