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Half-quantum vortices and walls bounded by strings in the polar-distorted phases of topological superfluid 3He

机译:拓扑超流体3He的极性畸变相中的半量子涡旋和壁以弦为界

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摘要

Symmetries of the physical world have guided formulation of fundamental laws, including relativistic quantum field theory and understanding of possible states of matter. Topological defects (TDs) often control the universal behavior of macroscopic quantum systems, while topology and broken symmetries determine allowed TDs. Taking advantage of the symmetry-breaking patterns in the phase diagram of nanoconfined superfluid 3He, we show that half-quantum vortices (HQVs)—linear topological defects carrying half quantum of circulation—survive transitions from the polar phase to other superfluid phases with polar distortion. In the polar-distorted A phase, HQV cores in 2D systems should harbor non-Abelian Majorana modes. In the polar-distorted B phase, HQVs form composite defects—walls bounded by strings hypothesized decades ago in cosmology. Our experiments establish the superfluid phases of 3He in nanostructured confinement as a promising topological media for further investigations ranging from topological quantum computing to cosmology and grand unification scenarios.
机译:物理世界的对称性指导了基本定律的制定,包括相对论量子场论和对物质可能状态的理解。拓扑缺陷(TDs)通常控制宏观量子系统的通用行为,而拓扑结构和对称性的破坏决定了允许的TDs。利用纳米约束超流体 3 He的相图中的对称破坏模式,我们证明了半量子涡(HQV)–带有半个循环量子的线性拓扑缺陷–从极地存活跃迁相到具有极性畸变的其他超流体相。在极点畸变的A相中,二维系统中的HQV磁芯应包含非阿比利亚马略拉模式。在极畸变的B相中,HQV形成复合缺陷,即由宇宙学中假设的弦线所围成的墙。我们的实验建立了 3 He在纳米结构禁闭中的超流体相,将其作为有前途的拓扑介质,可以用于从拓扑量子计算到宇宙学和统一大环境的进一步研究。

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