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Classes of topological qubits from low-dimensional quantum spin systems

机译:低维量子旋转系统的拓扑Qubits课程

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Topological phases of matter is a natural place for encoding robust qubits for quantum computation. In this work we extend the newly introduced class of qubits based on valence-bond solid models with SPT (symmetry-protected topological) order to more general cases. Furthermore, we define and compare various classes of topological qubits encoded in the bulk ground states of topological systems, including SSB (spontaneous symmetry-breaking), TOP (topological), SET (symmetry-enriched topological), SPT, and subsystem SPT classes. We focus on several features for qubits to be robust, including error sets, logical support, code distance and shape of logical gates. In particular, when a global U(1) symmetry is present and preserved, we find a twist operator that extracts the SPT order plays the role of a topological logical operator, which is suitable for global implementation. (C) 2019 Elsevier Inc. All rights reserved.
机译:物质的拓扑阶段是用于编码量子计算的鲁棒QUBITS的自然场所。 在这项工作中,我们基于具有SPT(对称保护拓扑)顺序的价粘合实体模型来扩展新引入的Qubits类,以更新的情况。 此外,我们定义和比较拓扑系统中批量接地状态中编码的各类拓扑Qubits,包括SSB(自发对称),顶部(拓扑),集合(富集拓扑),SPT和子系统SPT类。 我们专注于Qubits的若干功能,包括错误集,逻辑支持,逻辑支持,代码距离和逻辑门的形状。 特别是,当存在全局U(1)对称性并保留时,我们发现一个扭曲操作员提取SPT阶数扮演拓扑逻辑运算符的角色,这适用于全局实现。 (c)2019 Elsevier Inc.保留所有权利。

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