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Frames, designs, and spherical codes in quantum information theory.

机译:量子信息论中的框架,设计和球形代码。

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摘要

Frame theory offers a lens through which to view a large portion of quantum information theory, providing an organizational principle to those topics in its purview. In this thesis, I cut a trail from foundational questions to practical applications, from the origin of the quantum probability rule to quantum cryptography, by way of a standard quantum measurement helpful in quantum tomography and representation of quantum theory. Before embarking, preparations are undertaken by outlining the relevant aspects of frame theory, particularly the characterization of generalized orthonormal bases in terms of physical quantum measurements, as well as several aesthetically appealing families of measurements, each possessing a high degree of symmetry.; Much more than just elegant, though, these quantum measurements are found to be useful in many aspects of quantum information theory. I first consider the foundational question of justifying the quantum probability rule, showing that putting a probability valuation on generalized quantum measurements leads directly to the Born rule. Moreover, for qubits, the case neglected in the traditional formulation of Gleason's theorem, a symmetric three-outcome measurement called the trine is sufficient to impel the desired form. Keeping with foundational questions, I then turn to the problem of establishing a symmetric measurement capable of effortlessly rendering quantum theory in terms of classical probability theory. Numerical results provide an almost utterly convincing amount of evidence for this, justifying the subsequent study of its use in quantum tomography and detailed account of the properties of the reduction to probabilistic terms.; Saving perhaps the most exciting topic for last, I make use of these aesthetic ensembles in the applied field of quantum cryptography. A large class of streamlined key distribution protocols may be cut from the cloth of these ensembles, and their symmetry affords them improved tolerance to eavesdropping over the traditionally-studied schemes. Because the ability to put quantum key distribution protocols into practice is essentially right around the corner, I conclude by examining the prospects for implementing the new protocols in free space and their ability to boost the operating signal intensity, currently a major obstacle in the development of practical schemes.
机译:框架理论为观察量子信息理论的大部分提供了一个镜头,为它所研究的主题提供了组织原则。在本文中,我通过有助于量子层析成像和量子理论表示的标准量子测量方法,从基础问题到实际应用,从量子概率规则的起源到量子密码学,均走了一条路。在着手之前,通过概述框架理论的相关方面进行准备工作,特别是根据物理量子测量以及广义上具有正交性的几个吸引人的测量系列来表征广义正交基的特征。但是,这些量子测量不仅可以证明是优雅的,而且在量子信息论的许多方面都是有用的。我首先考虑证明量子概率规则合理性的基本问题,这表明对广义量子测量进行概率评估会直接导致Born规则。此外,对于量子位来说,在格里森定理的传统公式中被忽略的情况,称为三边形的对称三结果度量足以推动所需的形式。围绕基本问题,我接着转向建立对称度量的问题,该对称度量能够根据经典概率论毫不费力地呈现量子理论。数值结果为此提供了几乎完全令人信服的证据,证明了其随后在量子层析成像中的应用以及对归纳为概率项的性质的详细说明是合理的。也许最后一个最令人兴奋的话题没有得到解决,我在量子密码学的应用领域中利用了这些美学合奏。可以从这些集成的主体中裁剪出一大类简化的密钥分发协议,并且它们的对称性使它们比传统研究的方案具有更好的容忍窃听能力。由于将量子密钥分发协议付诸实践的能力几乎指日可待,因此我总结一下在自由空间中实施新协议的前景以及它们提高操作信号强度的能力,这是当前发展无线通信的主要障碍。实用方案。

著录项

  • 作者

    Renes, Joseph M.;

  • 作者单位

    The University of New Mexico.;

  • 授予单位 The University of New Mexico.;
  • 学科 Physics Optics.; Physics Atomic.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;分子物理学、原子物理学;
  • 关键词

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