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Probing helicity and the topological origins of helicity via non-local Hanbury-Brown and Twiss correlations

机译:通过非本地Hanbury-Brown和Twiss相关性探测螺旋度和螺旋的拓扑起源

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摘要

Quantum Hall edge modes are chiral while quantum spin Hall edge modes are helical. However, unlike chiral edge modes which always occur in topological systems, quasi-helical edge modes may arise in a trivial insulator too. These trivial quasi-helical edge modes are not topologically protected and therefore need to be distinguished from helical edge modes arising due to topological reasons. Earlier conductance measurements were used to identify these helical states, in this work we report on the advantage of using the non local shot noise as a probe for the helical nature of these states as also their topological or otherwise origin and compare them with chiral quantum Hall states. We see that in similar set-ups affected by same degree of disorder and inelastic scattering, non local shot noise “HBT” correlations can be positive for helical edge modes but are always negative for the chiral quantum Hall edge modes. Further, while trivial quasi-helical edge modes exhibit negative non-local”HBT” charge correlations, topological helical edge modes can show positive non-local “HBT” charge correlation. We also study the non-local spin correlations and Fano factor for clues as regards both the distinction between chirality/helicity as well as the topological/trivial dichotomy for helical edge modes.
机译:量子霍尔边缘模式是手性的,而量子自旋霍尔边缘模式是螺旋的。但是,与在拓扑系统中始终出现的手性边缘模式不同,准螺旋边缘模式也可能在琐碎的绝缘体中出现。这些琐碎的准螺旋边缘模式不受拓扑保护,因此需要与由于拓扑原因而产生的螺旋边缘模式区分开来。较早的电导测量被用来识别这些螺旋状态,在这项工作中,我们报告了使用非局部散粒噪声作为探测这些状态的螺旋性质以及它们的拓扑或其他起源的优势,并将它们与手性量子霍尔进行比较状态。我们看到,在受相同程度的无序度和非弹性散射影响的相似设置中,非局部散粒噪声“ HBT”相关性对于螺旋边缘模式可能为正,但对于手性量子霍尔边缘模式则始终为负。此外,虽然琐碎的准螺旋边缘模式显示负的非局部“ HBT”电荷相关性,但拓扑螺旋边缘模式可以显示正的非局部“ HBT”电荷相关性。我们还针对线索的非本地自旋相关性和Fano因子进行了研究,以了解手性/螺旋性以及螺旋边缘模式的拓扑/平凡二分法之间的区别。

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