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Tracing non-Abelian anyons via impurity particles

机译:通过杂质颗粒追踪非雅典的扰

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摘要

Non-Abelian excitations are an interesting feature of many fractional quantum Hall phases, including those phases described by the Moore-Read (or Pfaffian) wave function. However, the detection of the non-Abelian quasiparticles is challenging. Here, we consider a system described by the Moore-Read wave function and assume that impurity particles bind to its quasiholes. Then, the angular momentum of the impurities, reflected also by the impurity density, provides a useful witness of the physics of the non-Abelian excitations. By demanding that the impurities are constrained to the lowest Landau level, we are able to write down the corresponding many-body wave function describing both the Moore-Read liquid and the impurities. Through Monte Carlo sampling, we determine the impurity angular momentum, and we show that it suggests a quantum-statistical parameter α = av - b + P/2 for the quasiholes, where α ranges from 0 for bosons to 1 for fermions. A reasonable agreement with the Monte Carlo results is obtained for a = 1/4, b = 1/8, and P = 0, 1 depending on the parity of the particle number in the Moore-Read liquid. This parity dependence of the angular momentum serves as an unambiguous demonstration of the non-Abelian nature of the excitations. In addition to the studies of excitations in the Moore-Read liquid, we also apply our scheme to Laughlin liquids, for which we focus on interacting bosonic impurities. With this, the impurities themselves form Laughlin states, which allows for a study of hierarchical fractional quantum Hall states.
机译:非雅典激励是许多分数量子霍尔阶段的有趣特征,包括由摩尔读取(或PFaffian)波函数描述的那些相。然而,非雅中Quasipartiply的检测是具有挑战性的。这里,我们考虑由摩尔读波函数描述的系统,并假设杂质颗粒与其拟孔结合。然后,通过杂质密度反射的杂质的角动量,提供了非雅中激发物理学的有用证明。通过要求杂质被限制为最低的地兰水平,我们能够记下描述摩尔读液和杂质的相应许多体波函数。通过Monte Carlo采样,我们确定杂质角动量,并且我们表明它表明了Quasiheles的量子统计参数α= AV - B + P / 2,其中α范围为0对于磁骨头以供环晶。根据摩尔读液中的粒子数的奇校验,获得与蒙特卡罗结果的合理达成协议。角动量的这种奇偶校验依赖性是兴奋的非雅中性的明确展示。除了在摩尔读液中激发的研究外,我们还将我们的计划应用于Laughlin液体,我们专注于互动杂质。有了这一点,杂质本身形成了劳斯林状态,这允许研究分层分数量子厅态。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第3期|035133.1-035133.10|共10页
  • 作者单位

    ICFO-Institut de Ciencies Fotoniques The Barcelona Institute of Science and Technology 08860 Castelldefels (Barcelona) Spain;

    Departament de Fisica Quantica i Astrofisica Facultat de Fisica Universitat de Barcelona 08028 Barcelona Spain Institut de Ciencies del Cosmos Universitat de Barcelona ICCUB Marti i Franques 1 Barcelona 08028 Spain;

    ICFO-Institut de Ciencies Fotoniques The Barcelona Institute of Science and Technology 08860 Castelldefels (Barcelona) Spain Max-Planck-Institut fuer Quantenoptik D-85748 Garching Germany;

    ICFO-Institut de Ciencies Fotoniques The Barcelona Institute of Science and Technology 08860 Castelldefels (Barcelona) Spain ICREA Pg. Lluis Companys 23 08010 Barcelona Spain;

    ICFO-Institut de Ciencies Fotoniques The Barcelona Institute of Science and Technology 08860 Castelldefels (Barcelona) Spain;

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