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Linearized and high frequency electrooptic modulators.

机译:线性化和高频电光调制器。

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摘要

An analysis is performed of many standard and linearized electrooptic modulators known in the industry. The transfer functions of these modulators are evaluated under a consistent set of performance figures of merit, which are gain and spur-free dynamic range, using a canonical set of optical link parameters. The tolerance of the needed precision of the parameters of the linearization mechanisms of all of these modulators is compared over the entire interesting range of noise bandwidth.; A computer program was written to analyze the frequency dependence of any modulator transfer function under any set of functional inputs. The program is used to illustrate and compare the frequency dependence of the figures of merit of all of the modulators for which a d-c analysis was performed. Further analysis looks at the effect of greater noise-bandwidth and recovering the frequency-dependent degradation of gain and dynamic range through re-phasing techniques. The gain of directional couplers is analyzed in-depth.; Two novel modulator schemes are produced. The first uses reflective wave techniques to retime the electrical and optical waves half way through the modulator. The second uses fabrication geometry and properties of the linearization technique to make a more robust modulator (applicable to three of the modulators analyzed).; A 94 GHz antenna-coupled directional coupler modulator was initially demonstrated using an old modulator chip from Finbar Sheehy. A peculiar bug with the chip was uncovered. And a new modulator experiment was constructed and many aspects of the experimental apparatus were optimized. Though the revised experiment ultimately did not yield modulation side bands, it did couple a 94 GHz microwave signal into the optical waveguide, and many interesting challenges of high frequency electrooptic modulator fabrication were evaluated and improved upon.
机译:对行业中已知的许多标准和线性化电光调制器进行了分析。使用一组规范的光链路参数,在一组一致的性能指标(即增益和无杂散动态范围)下评估这些调制器的传递函数。在噪声带宽的整个令人感兴趣的范围内,对所有这些调制器的线性化机制的参数所需精度的公差进行了比较。编写了一个计算机程序来分析任何功能输入集下任何调制器传递函数的频率依赖性。该程序用于说明和比较对其进行d-c分析的所有调制器的品质因数的频率依赖性。进一步的分析着眼于更大的噪声带宽和通过重新定相技术恢复增益和动态范围的频率相关衰减的影响。深入分析了定向耦合器的增益。产生了两种新颖的调制器方案。第一种使用反射波技术对通过调制器的电波和光波重新计时。第二种使用线性化技术的制造几何形状和特性来制造更坚固的调制器(适用于所分析的三个调制器)。最初使用Finbar Sheehy的旧调制器芯片演示了一个94 GHz天线耦合定向耦合器调制器。发现了该芯片的一个特殊错误。并构建了新的调制器实验,并对实验装置的许多方面进行了优化。尽管修改后的实验最终没有产生调制边带,但它确实将94 GHz微波信号耦合到了光波导中,评估并改进了高频电光调制器制造中的许多有趣挑战。

著录项

  • 作者

    Cummings, Uri.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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