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周期性驱动阿贝尔自旋液体中的非阿贝尔任意子

Non-Abelian Anyons in Periodically Driven Abelian Spin Liquids.

作者信息

Petiziol Francesco

机构信息

<a href="https://ror.org/03v4gjf40">Technische Universität Berlin</a>, Institut für Theoretische Physik, Hardenbergstraße 36, 10623 Berlin.

出版信息

Phys Rev Lett. 2024 Jul 19;133(3):036601. doi: 10.1103/PhysRevLett.133.036601.

Abstract

We show that non-Abelian anyons can emerge from an Abelian topologically ordered system subject to local time-periodic driving. This is illustrated with the toric-code model, as the canonical representative of a broad class of Abelian topological spin liquids. The Abelian anyons in the toric code include fermionic and bosonic quasiparticle excitations which see each other as π fluxes; namely, they result in the accumulation of a π phase if wound around each other. Non-Abelian behavior emerges because the Floquet modulation can engineer a nontrivial band topology for the fermions, inducing their fractionalization into Floquet-Majorana modes bound to the bosons. The latter then develop non-Abelian character akin to vortices in topological superconductors, realizing Ising topological order. Our findings shed light on the nonequilibrium physics of driven topologically ordered quantum matter and may facilitate the observation of non-Abelian behavior in engineered quantum systems.

摘要

我们表明,非阿贝尔任意子可以从受局部时间周期驱动的阿贝尔拓扑有序系统中产生。这在环面码模型中得到了说明,环面码模型是一类广泛的阿贝尔拓扑自旋液体的典型代表。环面码中的阿贝尔任意子包括费米子和玻色子准粒子激发,它们将彼此视为π通量;也就是说,如果它们相互缠绕,就会导致π相的积累。非阿贝尔行为的出现是因为弗洛凯调制可以为费米子设计出非平凡的能带拓扑结构,诱导它们分数化为与玻色子束缚的弗洛凯-马约拉纳模式。后者随后发展出类似于拓扑超导体中涡旋的非阿贝尔特性,实现伊辛拓扑序。我们的发现揭示了驱动拓扑有序量子物质的非平衡物理,并可能有助于在工程量子系统中观察到非阿贝尔行为。

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