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Experimental Investigation into Spatial Quantum Optical Properties for Satellite Targeting through the Turbulent Atmosphere

机译:通过湍流大气瞄准卫星的空间量子光学特性的实验研究

摘要

A major field of research at the current time is that of implementing Quantum Key Distribution over large distances using satellites. If this protocol works with this technology, it will have huge implications on future information security. In order for a satellite to implement this idea, there are many aspects that must be taken into account. One of the big issues that comes up for this type of system is that of propagating light through the turbulent atmosphere and its effects on the acquisition, pointing and tracking system. The projects studied in this thesis study some of the effects of the atmosphere on certain detectors, try to develop pointing schemes for better accuracy as well as develop knowledge in free space propagation of other single photon experiments. In the first experiment, I study the spatial correlations of the daughter photons created in spontaneous parametric down conversion. I look at the effect of altering the pump beam on the positions of the down converted photons and see if the pump can be manipulated in a way to control the directions of the daughter photons. I begin to utilize a deformable mirror and Shack-Hartmann wavefront sensor which are generally used in adaptive optics, but we plan to use them to alter the pump beam in the spontaneous parametric down conversion process to analyze the correlations between the pump and down converted photons. The second experiment investigates the effects of laser scintillation on the performance of a possible tracking device that could be implemented on a satellite. This quad sensor tracks the position of a beam and a system will be developed to move the sensor to keep the beam in the center where there is a hole for the quantum single photons to stream through. In order to create the effects of scintillation, a turbulence simulator box was built and characterized. This box combines wind turbulence with a heat gradient to mimic atmospheric turbulence on a small scale. Finally, my contributions to a large scale, long distance free space quantum optics experiment are explained and the overall goal of the experiment is discussed. This experiment exposed me to actual free space transmission issues as well as many fundamental techniques for performing long distance optics experiments. In this experiment there was no correction for atmospheric turbulence, but in the future, techniques could be implemented which might increase the efficiencies of the free space links.
机译:当前的主要研究领域是使用卫星在远距离上实施量子密钥分配。如果该协议与此技术一起使用,它将对未来的信息安全性产生巨大的影响。为了使卫星实现这一想法,必须考虑许多方面。这种系统出现的主要问题之一是使光线在湍流的大气中传播,以及其对采集,指向和跟踪系统的影响。本文研究的项目研究了大气对某些探测器的影响,试图开发指向方案以提高准确性,并开发其他单光子实验的自由空间传播知识。在第一个实验中,我研究了在自发参数下转换中创建的子光子的空间相关性。我研究了在下转换的光子位置上改变泵浦光束的效果,看看是否可以通过控制子光子方向的方式来操纵泵浦。我开始使用自适应光学中通常使用的可变形反射镜和Shack-Hartmann波前传感器,但我们计划在自发的参数下转换过程中使用它们来改变泵浦光束,以分析泵浦和下转换光子之间的相关性。 。第二个实验研究了激光闪烁对可能在卫星上实现的跟踪设备性能的影响。这个四边形传感器跟踪光束的位置,将开发一个系统来移动传感器,以将光束保持在中央,那里有一个供量子单光子流过的孔。为了产生闪烁的效果,构建并表征了湍流模拟器盒。这个盒子结合了风的湍流和热量的梯度,可以在小范围内模拟大气的湍流。最后,解释了我对大规模,长距离自由空间量子光学实验的贡献,并讨论了实验的总体目标。该实验使我暴露于实际的自由空间传输问题以及进行长距离光学实验的许多基本技术。在该实验中,没有对大气湍流进行校正,但是在将来,可以实施可能会提高自由空间链接效率的技术。

著录项

  • 作者

    Pugh Christopher;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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