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Electro-Optic Polymers: Materials and Devices

机译:光电聚合物:材料和设备

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摘要

Electro-optic (EO) polymers are an attractive alternative to inorganic nonlinear materials. EO polymers with a Pockel's coefficient, r33, greater than 320 pm/V have been recently demonstrated. In addition to their high EO activity, EO polymers have the additional benefit that their dielectric constants at optical and millimeter wave frequencies are closely matched which allow for bandwidths which are limited only by the resistive losses of traveling wave electrodes. The amorphous nature of the host polymer makes heterogeneous integration of the materials on any substrate possible. The devices which will have the most immediate impact based on these recent materials developments are EO waveguide modulators. Performance benchmarks of less than 6 dB insertion loss, sub-volt Vpi and greater than 100 GHz bandwidth have been achieved separately however, the challenge of achieving all of these benchmarks in a single device has not yet been met.The aim of this dissertation is to optimize passive materials to achieve efficient in device poling of EO polymers, optimize the chromophore loading of the active polymers and to optimize waveguide modulators for device performance within a particular system, analog RF photonic links. These optimizations were done by defining figures of merit for the materials and modulators. This research strategy has led to significant improvements in poling efficiency as well as modulators with record low insertion losses which maintain a low half-wave voltage; on the order of 1 - 2 Volts. Using this optimization strategy and state of the art EO polymers, devices which meet or surpass the benchmark performance values in all categories are expected in the near future.
机译:电光(EO)聚合物是无机非线性材料的诱人替代品。最近已经证明了具有大于320 pm / V的普克尔系数r33的EO聚合物。除了具有高的EO活性外,EO聚合物还具有另一个好处,即它们在光学和毫米波频率下的介电常数紧密匹配,从而允许带宽仅受行波电极的电阻损耗限制。主体聚合物的无定形性质使得材料在任何基材上的异质整合成为可能。基于这些最新材料的发展,将产生最直接影响的设备是EO波导调制器。分别达到了小于6 dB的插入损耗,亚伏特Vpi和大于100 GHz带宽的性能基准,但是,尚未满足在单个设备中实现所有这些基准的挑战。为了优化无源材料以实现EO聚合物器件极化的效率,优化活性聚合物的生色团负载并优化波导调制器,以在特定系统(模拟RF光子链路)中实现器件性能。通过定义材料和调制器的品质因数来完成这些优化。这种研究策略已导致极化效率以及具有创纪录的低插入损耗且保持低半波电压的调制器得到了显着改善。大约1-2伏。使用这种优化策略和最先进的EO聚合物,预计在不久的将来将达到或超过所有类别的基准性能值的设备。

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  • 作者

    DeRose Christopher Todd;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 EN
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