物理
马约拉纳
耗散系统
拓扑序
量子退相干
拓扑(电路)
量子力学
量子
哈密顿量(控制论)
拓扑简并
对称保护拓扑序
物理中的拓扑熵
理论物理学
费米子
拓扑量子数
组合数学
数学优化
数学
作者
Sebastian Diehl,E. Rico,M. A. Baranov,P. Zoller
出处
期刊:Nature Physics
[Nature Portfolio]
日期:2011-10-02
卷期号:7 (12): 971-977
被引量:406
摘要
Robust edge states and non-Abelian excitations are the trademark of topological states of matter, with promising applications such as "topologically protected" quantum memory and computing. While so far topological phases have been exclusively discussed in a Hamiltonian context, we show that such phases and the associated topological protection and phenomena also emerge in open quantum systems with engineered dissipation. The specific system studied here is a quantum wire of spinless atomic fermions in an optical lattice coupled to a bath. The key feature of the dissipative dynamics described by a Lindblad master equation is the existence of Majorana edge modes, representing a non-local decoherence free subspace. The isolation of the edge states is enforced by a dissipative gap in the p-wave paired bulk of the wire. We describe dissipative non-Abelian braiding operations within the Majorana subspace, and we illustrate the insensitivity to imperfections. Topological protection is granted by a nontrivial winding number of the system density matrix.
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