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Experimental studies of two-mode squeezed states in rubidium vapor.

机译:rub蒸气中双模压缩态的实验研究。

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In this thesis we describe a series of calculations and experiments that use atomic coherence for the generation of two-mode squeezed states of the electromagnetic field. Atomic coherence makes it possible to eliminate the problems of absorption losses and spontaneous emission that have limited the amount of squeezing obtained with atomic systems. Effects such as electromagnetically induced transparency allow for efficient generation of atomic coherence and are used as the basis for the generation of squeezed states.; We analyze the use of a double-Λ configuration in order to combine a four-wave mixing process and atomic coherence in a single system. The use of this configuration makes it possible to eliminate absorption and enhance the four-wave mixing process responsible for the generation of a two-mode squeezed state.; We used a new detection technique, which we devised, based on the use of a bichromatic local oscillator in a balanced heterodyne detection scheme for the characterization of two-mode squeezed states. This new detection technique makes it possible to characterize squeezed states independently of the frequency separation between the modes.; In order to obtain the required phase-coherent lasers, we designed and implemented a laser system that consists of three stabilized external-cavity diode lasers. We obtained a system with a residual phase noise of less than 0.04 rad2. We studied electromagnetically induced transparency in the D1 line of 87Rb and obtained a reduction in absorption of 92%. Experimentally, we implemented the double-Λ scheme in the D1 line of 87Rb in a vapor cell. We were able to verify the presence of correlations between the fields generated from the four-wave mixing process and produced more than 10 decibels of phase-dependent noise modulation.; Finally, we propose a new quantum communication scheme that takes advantage of the properties of a two-mode squeezed state. This new scheme offers the possibility of securely transmitting either a cryptographic key or a deterministic message. We analyze the security of the scheme and find that it can be verified with the use of the quantum correlations in the two-mode squeezed state.
机译:在本文中,我们描述了一系列使用原子相干性生成电磁场双模压缩状态的计算和实验。原子相干性可以消除吸收损失和自发发射的问题,这些问题限制了原子系统获得的压缩量。电磁感应的透明性等效应可以有效地产生原子相干性,并被用作产生压缩态的基础。我们分析了双Λ配置的使用,以便在单个系统中结合四波混合过程和原子相干性。这种配置的使用可以消除吸收并增强负责产生双模压缩状态的四波混合过程。我们在平衡外差检测方案中使用双色本振的基础上,设计了一种新的检测技术,用于表征双模压缩态。这种新的检测技术可以独立于模式之间的频率间隔来表征压缩状态。为了获得所需的相位相干激光器,我们设计并实现了一个由三个稳定的外腔二极管激光器组成的激光器系统。我们获得了一个残留相位噪声小于0.04 rad2的系统。我们研究了D1线87Rb中的电磁感应透明性,并获得了92%的吸收降低。通过实验,我们在蒸气室中的87Rb的D1线中实施了double-Λ方案。我们能够验证四波混频过程产生的磁场之间的相关性,并产生了超过10分贝的相位相关噪声调制。最后,我们提出了一种新的量子通信方案,该方案利用了双模压缩态的特性。这种新方案提供了安全传输加密密钥或确定性消息的可能性。我们分析了该方案的安全性,发现可以在双模压缩状态下使用量子相关性对其进行验证。

著录项

  • 作者

    Marino, Alberto M.;

  • 作者单位

    University of Rochester.;

  • 授予单位 University of Rochester.;
  • 学科 Physics Atomic.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 184 p.
  • 总页数 184
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;光学;
  • 关键词

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