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Boundary conformal field theory and tunneling of edge quasiparticles in non-Abelian topological states

机译:边界共形场理论和非阿贝尔拓扑状态的边缘准粒子的隧穿

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We explain how (perturbed) boundary conformal field theory allows us to understand the tunneling of edge quasiparticles in non-Abelian topological states. The coupling between a bulk non-Abelian quasiparticle and the edge is due to resonant tunneling to a zero mode on the quasiparticle, which causes the zero mode to hybridize with the edge. This can be reformulated as the flow from one conformally invariant boundary condition to another in an associated critical statistical mechanical model. Tunneling from one edge to another at a point contact can split the system in two, either partially or completely. This can be reformulated in the critical statistical mechanical model as the flow from one type of defect line to another. We illustrate these two phenomena in detail in the context of the nu = 5/2 quantum Hall state and the critical Ising model, We briefly discuss the case of Fibonacci anyons and conclude by explaining the general formulation and its physical interpretation.
机译:我们解释(扰动的)边界共形场理论如何使我们理解非阿贝尔拓扑状态中的边缘准粒子的隧穿。大量非阿贝尔准粒子与边缘之间的耦合归因于在准粒子上共振隧穿到零模,这导致零模与边缘杂化。在相关的临界统计力学模型中,可以将其重新构造为从一个保形不变的边界条件流向另一个的条件。从点接触的一个边缘到另一个边缘的隧穿可以将系统部分或全部分为两部分。这可以在临界统计力学模型中重新表述为从一种缺陷线到另一种缺陷线的流动。我们在nu = 5/2量子霍尔状态和临界伊辛模型的背景下详细说明了这两种现象。

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