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Strong correlations and topological order in one-dimensional systems.

机译:一维系统中的强相关性和拓扑顺序。

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摘要

This thesis presents theoretical studies of strongly correlated systems as well as topologically ordered systems in 1D. Non-Fermi liquid behavior characteristic of interacting 1D electron systems is investigated with an emphasis on experimentally relevant setups and observables. The existence of end Majorana fermions in a 1D p-wave superconductor subject to periodic, incommensurate and disordered potentials is studied.;The Tomonaga-Luttinger liquid (TLL), a model of interacting electrons in one spatial dimension, is considered in the context of two systems of experimental interest. First, a study of the electronic properties of single-walled armchair carbon nanotubes in the presence of transverse electric and magnetic fields is presented. As a result of their effect on the band structure and electron wave functions, fields alter the nature of the (effective) Coulomb interaction in tubes. In particular, it is found that fields couple to nanotube bands (or valleys), a quantum degree of freedom inherited from the underlying graphene lattice. As revealed by a detailed TLL calculation, it is predicted that fields induce electrons to disperse into their spin, band, and charge components. Fields also provide a means of tuning the shell-filling behavior associated with short tubes.;The phenomenon of charge fractionalization is investigated in a one-dimensional ring. TLL theory predicts that momentum-resolved electrons injected into the ring will fractionalize into clockwise- and counterclockwise-moving quasiparticles. As a complement to transport measurements in quantum wires connected to leads, non-invasive measures involving the magnetic field profiles around the ring are proposed.;Topological aspects of 1D p-wave superconductors are explored. The intimate connection between non-trivial topology (fermions) and spontaneous symmetry breaking (spins) in one-dimension is investigated. Building on this connection, a spin ladder system endowed with vortex degrees of freedom is proposed in order to study the effects that inhomogeneous potentials have on the topological phase diagram. Periodic vortex patterns yield a rich parameter space for tuning into a topologically non-trivial phase. This analysis hinges on the development of a topological invariant based on the wave function of Majorana fermions which inhabit the ends of the system and are robust to disorder. The method is generalized to aperiodic and disordered potentials. The topological phase diagram of such systems is studied; numerical and analytic results are found to be in close agreement.
机译:本文对一维强相关系统以及拓扑有序系统进行了理论研究。相互作用的一维电子系统的非费米液体行为特征进行了研究,重点是实验相关的设置和可观察性。研究了一维p波超导体中存在周期性,不相称和无序电势的马洛拉那末端费米子的存在;研究了Tomonaga-Luttinger液体(TLL),它是在一个空间维度上与电子相互作用的模型,其背景是两个具有实验意义的系统。首先,提出了在存在横向电场和磁场的情况下对单壁扶手椅状碳纳米管的电子性能的研究。由于它们对能带结构和电子波功能的影响,电场改变了管中(有效)库仑相互作用的性质。特别地,发现场耦合至纳米管带(或谷),其是从下面的石墨烯晶格继承的量子自由度。正如详细的TLL计算所揭示的那样,可以预言,电场会诱导电子分散到其自旋,能带和电荷成分中。场还提供了一种调整与短管相关的壳填充行为的方法。在一维环中研究了电荷分馏现象。 TLL理论预测注入到环中的动量分辨电子将细分为顺时针和逆时针移动的准粒子。作为对与引线连接的量子线中传输测量的补充,提出了涉及环周围磁场分布的非侵入性测量方法。;探讨了一维p波超导体的拓扑方面。研究了一维非平凡拓扑(费米子)与自发对称断裂(自旋)之间的紧密联系。在此基础上,提出了一种具有旋涡自由度的自旋阶梯系统,以研究不均匀电势对拓扑相图的影响。周期性的涡旋模式会产生丰富的参数空间,以便调整到拓扑上无关紧要的阶段。该分析取决于基于马里亚纳费米子波函数的拓扑不变量的发展,该马里亚纳费米子位于系统的末端并且对无序性很强。该方法被推广到非周期性和无序电位。研究了这类系统的拓扑相图。数值和分析结果非常接近。

著录项

  • 作者

    De Gottardi, Wade Wells.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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