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Sudden death of entanglement and non-locality in two- and three-component quantum systems.

机译:在两个和三个分量的量子系统中,纠缠和非局部性突然死亡。

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摘要

Quantum entanglement and non-locality are non-classical characteristics of quantum states with phase coherence that are of central importance to physics, and relevant to the foundations of quantum mechanics and quantum information science. This thesis examines quantum entanglement and non-locality in two- and three-component quantum states with phase coherence when they are subject to statistically independent, classical, Markovian, phase noise in various combinations at the local and collective level. Because this noise reduces phase coherence, it can also reduce quantum entanglement and Bell non-locality. After introducing and contextualizing the research, the results are presented in three broad areas.;The first area characterizes the relative time scales of decoherence and disentanglement in 2 x 2 and 3 x 3 quantum states, as well as the various subsystems of the two classes of entangled tripartite two-level quantum states. In all cases, it was found that disentanglement time scales are less than or equal to decoherence time scales. The second area examines the finite-time loss of entanglement, even as quantum state coherence is lost only asymptotically in time due to local dephasing noise, a phenomenon entitled "Entanglement Sudden Death" (ESD). Extending the initial discovery in the simplest 2 x 2 case, ESD is shown to exist in all other systems where mixed-state entanglement measures exist, the 2 x 3 and d x d systems, for finite d > 2. The third area concerns non-locality, which is a physical phenomenon independent of quantum mechanics and related to, though fundamentally different from, entanglement. Non-locality, as quantified by classes of Bell inequalities, is shown to be lost in finite time, even when decoherence occurs only asymptotically. This phenomenon was named "Bell Non-locality Sudden Death" (BNSD).
机译:量子纠缠和非局域性是具有相干性的量子态的非经典特征,其对物理学至关重要,并且与量子力学和量子信息科学的基础有关。本文研究了具有局部相干性的两种组合在统计上独立,经典,马尔可夫,相位噪声的具有相干性的二元和三元量子态的量子纠缠和非局部性。由于这种噪声降低了相位相干性,因此还可以减少量子纠缠和Bell非局部性。在对研究进行介绍和背景后,将在三个主要领域中介绍研究结果:第一个领域描述了2 x 2和3 x 3量子态的退相干和解纠缠的相对时间尺度,以及这两个类别的各个子系统纠缠的三重两能级量子态。在所有情况下,发现解缠结时标小于或等于退相干时标。第二个区域检查了纠缠的有限时间损失,即使量子状态相干性仅由于局部移相噪声而在时间上渐近消失,这种现象称为“纠缠猝死”(ESD)。在最简单的2 x 2情况下扩展了最初的发现,发现ESD在存在其他混合态纠缠措施的所有其他系统(2 x 3和dxd系统)中存在d> 2有限。第三个区域涉及非局部性,这是一种物理现象,独立于量子力学,与纠缠有关,尽管从根本上说与纠缠有关。通过贝尔不等式类别量化的非局域性被证明在有限时间内消失,即使退相干只是渐近地发生。这种现象被称为“贝尔非本地性猝死”(BNSD)。

著录项

  • 作者

    Ann, Kevin.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Physics Quantum.;Physics Theory.;Physics General.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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