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Symmetry-protected self-correcting quantum memory in three space dimensions

机译:三个空间尺寸的对称保护的自我校正量子存储器

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摘要

Whether self-correcting quantum memories can exist at nonzero temperature in a physically reasonable setting remains a great open problem. It has recently been argued [S. Roberts and S. D. Bartlett, Phys. Rev. X 10, 031041 (2020)] that symmetry-protected topological (SPT) systems in three space dimensions subject to a strong constraint-that the quantum dynamics respect a 1-form symmetry-realize such a quantum memory. We illustrate how this works in Walker-Wang codes, which provide a specific realization of these desiderata. In this setting we show that it is sufficient for the 1-form symmetry to be enforced on a subvolume of the system. This strongly suggests that the SPT character of the state is not essential. We confirm this by constructing an explicit example with a trivial (paramagnetic) bulk that realizes a self-correcting quantum memory. We therefore show that the enforcement of a 1-form symmetry on a measure-zero subvolume of a three-dimensional system can be sufficient to stabilize a self-correcting quantum memory at nonzero temperature.
机译:在物理上合理的环境中是否可以在非零温度下存在自我校正量子存储器仍然是一个很大的开放问题。它最近被认为[S.罗伯茨和S. D. Bartlett,Phy。 Rev. x 10,031041(2020)]对称保护的拓扑(SPT)系统在三个空间尺寸上受到强制约束的强制性 - Quantum动力学尊重1形对称性 - 实现这种量子存储器。我们说明了这在Walker-Wang代码中的作用,它提供了对这些Desiderata的具体实现。在此设置中,我们表明,在系统的子窗上强制执行1型对称性就足够了。这强烈建议国家的SPT特征不是必需的。我们通过构建具有实现自校正量子存储器的简约示例来确认这一点。因此,我们表明,在三维系统的测量零子瓣上执行1形对称性的实施可以足以在非零温度下稳定自校正量子存储器。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第23期|235112.1-235112.10|共10页
  • 作者单位

    Department of Physics and Center for Theory of Quantum Matter University of Colorado Boulder Colorado 80309 USA;

    Department of Physics and Center for Theory of Quantum Matter University of Colorado Boulder Colorado 80309 USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-19 02:45:19

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