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High-gain parametric amplification for the generation of quantum states of light.

机译:高增益参量放大,用于产生光的量子态。

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摘要

The novel quantum statistical properties of the two-photon entangled states generated by spontaneous parametric downconversion have been utilized in a variety of fourth-order interferometric configurations. The extent to which the intense light produced by an unneeded parametric amplifier (optical parametric generator) retains these desirable properties is explored in a series of calculations.; Common fourth-order interferometric configurations using two-photon entangled states are summarized, with an emphasis on the Hong-Ou-Mandel and Mach-Zehnder interferometers. This summary is followed by a review of recent proposals for the exploitation of entangled states for sub-Rayleigh-limit imaging.; The limitations of using parametric downconversion at two-photon levels are discussed and the replacement of two-photon interferometric sources with the multiphoton output of a high-gain optical parametric generator is considered. The output of the Hong-Ou-Mandel interferometer, Mach-Zehnder interferometer, and quantum lithography configurations as a function of single-pass gain is determined, and the interpretation of these results in the context of multiple photon pair contributions to interferometric patterns is presented.; The analysis of the high-gain optical parametric generator as a fourth-order interferometric source is then extended to the case of multiple signal and idler output modes. The impact of the system transfer characteristics on the desired interferometric properties is discussed.; The initiation of beam filamentation by vacuum fluctuations is considered, and this four-wave mixing process is compared to parametric downconversion as a source for fourth-order interferometric applications.; We conclude by contrasting the states produced by high-gain optical parametric generation with coherent states and the states produced by seeded optical parametric amplification as sources for fourth-order interferometric configurations.
机译:通过自发的参量下转换产生的双光子纠缠态的新颖量子统计性质已用于多种四阶干涉测量配置中。在一系列计算中探讨了不需要的参量放大器(光学参量发生器)产生的强光保持这些理想特性的程度。总结了使用双光子纠缠态的常见四阶干涉仪配置,重点介绍了Hong-Ou-Mandel和Mach-Zehnder干涉仪。在总结之后,回顾了关于利用纠缠态进行次瑞利极限成像的最新提议。讨论了在双光子级使用参数下变频的局限性,并考虑了用高增益光学参量发生器的多光子输出代替双光子干涉源。确定了Hong-Ou-Mandel干涉仪,Mach-Zehnder干涉仪和量子光刻配置作为单程增益的函数的输出,并给出了在多个光子对干涉图样的情况下这些结果的解释。;高增益光学参量发生器作为四阶干涉测量源的分析随后扩展到多种信号和惰轮输出模式的情况。讨论了系统传输特性对所需干涉特性的影响。考虑到由真空波动引起的束丝开始,并将这种四波混频过程与参数下变频作了比较,以此作为四阶干涉测量应用的来源。我们通过将高增益光学参量产生的状态与相干态和由种子光学参量放大产生的状态作四阶干涉测量配置的源进行对比来得出结论。

著录项

  • 作者

    Nagasako, Elna Mieko.;

  • 作者单位

    The University of Rochester.;

  • 授予单位 The University of Rochester.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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