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Topology, localization, and quantum information in atomic, molecular and optical systems.

机译:原子,分子和光学系统中的拓扑,本地化和量子信息。

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摘要

The scientific interface between atomic, molecular and optical (AMO) physics, condensed matter, and quantum information science has recently led to the development of new insights and tools that bridge the gap between macroscopic quantum behavior and detailed microscopic intuition. While the dialogue between these fields has sharpened our understanding of quantum theory, it has also raised a bevy of new questions regarding the out-of-equilibrium dynamics and control of many-body systems. This thesis is motivated by experimental advances that make it possible to produce and probe isolated, strongly interacting ensembles of disordered particles, as found in systems ranging from trapped ions and Rydberg atoms to ultracold polar molecules and spin defects in the solid state. The presence of strong interactions in these systems underlies their potential for exploring correlated many-body physics and this thesis presents recent results on realizing fractionalization and localization. From a complementary perspective, the controlled manipulation of individual quanta can also enable the bottom-up construction of quantum devices. To this end, this thesis also describes blueprints for a room-temperature quantum computer, quantum credit cards and nanoscale quantum thermometry.
机译:原子,分子和光学(AMO)物理学,凝聚态物质和量子信息科学之间的科学联系最近导致了新的见解和工具的发展,这些见解和工具弥合了宏观量子行为与详细的微观直觉之间的鸿沟。这些领域之间的对话不仅增进了我们对量子理论的理解,还引发了关于多体系统的失衡动力学和控制的一系列新问题。本论文的动机是通过实验的发展,使之有可能产生和探测孤立的,无序的,强烈相互作用的无序粒子团,这在从捕获离子和里德伯格原子到超冷极性分子和固态自旋缺陷的系统中都可以找到。这些系统中强相互作用的存在奠定了它们探索相关多体物理学的潜力,并且本文提出了有关实现分数化和局部化的最新结果。从互补的角度来看,对单个量子的受控操纵还可以实现量子设备的自底向上构造。为此,本论文还描述了室温量子计算机,量子信用卡和纳米级量子测温的蓝图。

著录项

  • 作者

    Yao, Norman Ying.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Physics Atomic.;Physics Molecular.;Physics Quantum.;Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 302 p.
  • 总页数 302
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:48

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