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Transverse anderson localization in disordered optical fibers.

机译:在无序光纤中的横向安德森定位。

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摘要

In any wave-guiding system, disorder and randomness in the wave propagation medium are considered as annoyances that result in wave scattering and inefficient wave transport. In contrast, in this work, the disorder is utilized in the transverse directions of an optical fiber for an effective light transport. The transversely disordered refractive index profile is invariant along the direction of propagation that results in transverse Anderson localization of light. A launched beam of light into the disordered fiber initially expands until it reaches the localization regime then propagates without further expansion in the transverse directions. A disordered polymer optical fiber composed of poly methyl methacrylate (PMMA) and poly styrene (PS) is designed using numerical simulations. The disordered polymer fiber is fabricated by drawing a preform of randomly mixed PMMA and PS strands. The light propagation in the disordered polymer fiber results in a localized beam radius that is comparable to the ones in the conventional optical fibers. The location of the transported beam at the output follows the location of the scanning beam at the input. In order to show the origin of transverse Anderson localization, the full vectorial modes of the disordered polymer optical fiber are calculated. The impacts of different design parameters on the light propagation in the disordered optical fibers are investigated. It is shown that the ultimate practical design is a disordered optical fiber that consists of glass and air sites with equal probability. The light propagation in a disordered glass optical fiber fabricated from porous glass with disordered air voids is studied as the first investigation of transverse Anderson localization in silica optical fibers. The non-uniform distribution of air voids in the glass host results in the wave localization in the regions with high fill-fraction of air voids.;The possibility of simultaneous multiple-beam propagation in the disordered polymer optical fiber is examined numerically and experimentally. The impact of macro-bending on drifting the center of a propagating beam in the disordered polymer fiber is inspected. The macro-bending locally increases the refractive index difference between the disordered sites that results in a bend-insensitive wave propagation. The spatial multiplexing property of the disordered polymer fiber is utilized for high quality image transport. The quality of the transported images in the disordered polymer optical fiber is numerically and experimentally compared with the ones in the commercially available imaging fibers. The quality of the transported images is assessed using an effective objective evaluation technique. The impact of disorder on improving the image quality is specifically investigated by randomizing the radii of the cores in a periodic multicore fiber.
机译:在任何波导管系统中,波传播介质中的无序和随机性都被认为是导致波散射和波传输效率低下的烦恼。相反,在这项工作中,无序在光纤的横向上被利用以进行有效的光传输。横向无序折射率分布沿传播方向是不变的,从而导致光的横向安德森局部化。入射到无序光纤中的光束最初会扩展,直到到达定位状态,然后再传播,而不会在横向方向上进一步扩展。使用数值模拟设计了由聚甲基丙烯酸甲酯(PMMA)和聚苯乙烯(PS)组成的无序聚合物光纤。无序聚合物纤维是通过拉伸随机混合的PMMA和PS股线的预成型件而制成的。无序聚合物纤维中的光传播导致局部光束半径与传统光纤中的相当。传输光束在输出处的位置跟随扫描光束在输入处的位置。为了显示安德森横向定位的起源,计算了无序聚合物光纤的全部矢量模式。研究了不同设计参数对无序光纤中光传播的影响。结果表明,最终的实际设计是一种无序光纤,该光纤由玻璃和空气位置组成的可能性相等。研究了由多孔玻璃制成的具有无序气孔的无序玻璃光纤中的光传播,这是对二氧化硅光纤中横向安德森定位的首次研究。玻璃基质中气孔的不均匀分布会导致在气孔填充率高的区域中发生波定位。;通过数值和实验研究了无序聚合物光纤中同时进行多光束传播的可能性。检查了宏观弯曲对无序聚合物纤维中传播光束中心漂移的影响。宏观弯曲局部增大了无序位置之间的折射率差,这导致了弯曲不敏感的波传播。无序聚合物纤维的空间多路复用性质用于高质量图像传输。在数值和实验上,将无序聚合物光纤中传输的图像的质量与市售成像光纤中传输的图像的质量进行了数值和实验比较。使用有效的客观评估技术评估所传输图像的质量。通过随机化周期性多芯光纤中纤芯的半径,专门研究了无序对提高图像质量的影响。

著录项

  • 作者

    Karbasivalashani, Salman.;

  • 作者单位

    The University of Wisconsin - Milwaukee.;

  • 授予单位 The University of Wisconsin - Milwaukee.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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