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Utilizing gaussian-schell model beams to mitigate atmospheric turbulence in free space optical communications.

机译:利用高斯-谢尔模型光束减轻自由空间光通信中的大气湍流。

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摘要

Turbulence affects traditional free space optical communication by causing speckle to appear in the received beam profile. This occurs due to changes in the refractive index of the atmosphere that are caused by fluctuations in temperature and pressure, resulting in an inhomogeneous medium. The Gaussian-Schell model of partial coherence has been suggested as a means of mitigating these atmospheric inhomogeneities on the transmission side.;This dissertation analyzed the Gaussian-Schell model of partial coherence by verifying the Gaussian-Schell model in the far-field, investigated the number of independent phase control screens necessary to approach the ideal Gaussian-Schell model, and showed experimentally that the Gaussian-Schell model of partial coherence is achievable in the far-field using a liquid crystal spatial light modulator. A method for optimizing the statistical properties of the Gaussian-Schell model was developed to maximize the coherence of the field while ensuring that it does not exhibit the same statistics as a fully coherent source. Finally a technique to estimate the minimum spatial resolution necessary in a spatial light modulator was developed to effectively propagate the Gaussian-Schell model through a range of atmospheric turbulence strengths.;This work showed that regardless of turbulence strength or receiver aperture, transmitting the Gaussian-Schell model of partial coherence instead of a fully coherent source will yield a reduction in the intensity fluctuations of the received field. By measuring the variance of the intensity fluctuations and the received mean, it is shown through the scintillation index that using the Gaussian-Schell model of partial coherence is a simple and straight forward method to mitigate atmospheric turbulence instead of traditional adaptive optics in free space optical communications.
机译:湍流通过使斑点出现在接收到的光束轮廓中而影响传统的自由空间光通信。这是由于温度和压力波动引起的大气折射率变化而导致的,导致介质不均匀。提出了部分相干的高斯-谢尔模型作为缓解传输侧大气大气非均匀性的一种方法。本文通过在远场验证高斯-谢尔模型,分析了部分相干的高斯-谢尔模型。接近理想高斯-谢尔模型所需的独立相位控制屏幕的数量,并通过实验表明,使用液晶空间光调制器可在远场实现高相干-谢尔模型的部分相干。开发了一种优化高斯-谢尔模型统计特性的方法,以最大化场的相干性,同时确保它不表现出与完全相干的源相同的统计量。最后,开发了一种估算空间光调制器所需的最小空间分辨率的技术,以通过一系列大气湍流强度有效传播高斯-谢尔模型。这项工作表明,无论湍流强度或接收器孔径如何,都可以传输高斯-部分相干而不是完全相干源的Schell模型将减少接收场的强度波动。通过测量强度波动和接收平均值的方差,通过闪烁指数表明,使用高斯-谢尔部分相干模型是减轻大气湍流的一种简单直接的方法,它代替了自由空间光学中的传统自适应光学器件。通讯。

著录项

  • 作者

    Drexler, Kyle R.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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