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首页> 外文期刊>Applied optics >In-line liquid-crystal microcell wave plates and their application for high-speed, reset-free polarization mode dispersion compensation in 40-Gbit/s systems
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In-line liquid-crystal microcell wave plates and their application for high-speed, reset-free polarization mode dispersion compensation in 40-Gbit/s systems

机译:在线液晶微单元波片及其在40 Gbit / s系统中的高速,免复位偏振模式色散补偿中的应用

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摘要

We describe the design, fabrication, and performance of a high-speed, continuously tunable, and reset-free polarization controller based on nematic liquid-crystal (NLC) microcell wave plates fabricated directly between the tips of optical fibers. This controller utilizes a pulsed driving scheme and optimized NLC materials to achieve a stepwise switching speed of 1 deg/μs, for arbitrary rotation angles with moderately low voltages. This compact microcell design requires no bulk optical components and has the potential to have low insertion loss. We describe the performance of these devices when implemented in polarization mode dispersion compensators for 40 Gbit/s systems. The good optical properties and the nonmechanical, high-speed, and low-power operation suggest that this type of device might be considered for some applications in dynamic compensation of polarization mode dispersion, polarization analysis, polarization division demultiplexing, and polarization scrambling in high-speed optical communication systems.
机译:我们描述了基于向列型液晶(NLC)微单元波片的,直接在光纤尖端之间制造的高速,连续可调且无复位的偏振控制器的设计,制造和性能。对于任意旋转角度适中的低电压,该控制器利用脉冲驱动方案和优化的NLC材料来实现1 deg /μs的逐步切换速度。这种紧凑的微电池设计不需要大量的光学组件,并且具有低插入损耗的潜力。我们描述了在40 Gbit / s系统的偏振模色散补偿器中实现这些设备时的性能。良好的光学性能以及非机械,高速和低功耗的运行情况表明,这种类型的设备可能会被用于某些应用中,用于偏振模色散的动态补偿,偏振分析,偏振分波解复用和高功率下的偏振加扰。加快光通信系统的速度。

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    《Applied optics》 |2003年第27期|共6页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
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