Mizushima Takeshi, Tsutsumi Yasumasa, Sato Masatoshi, Machida Kazushige
Department of Physics, Okayama University, Okayama 700-8530, Japan.
J Phys Condens Matter. 2015 Mar 25;27(11):113203. doi: 10.1088/0953-8984/27/11/113203. Epub 2015 Mar 2.
Owing to the richness of symmetry and well-established knowledge of bulk superfluidity, the superfluid (3)He has offered a prototypical system to study intertwining of topology and symmetry. This article reviews recent progress in understanding the topological superfluidity of (3)He in a multifaceted manner, including symmetry considerations, the Jackiw-Rebbi's index theorem, and the quasiclassical theory. Special focus is placed on the symmetry protected topological superfuidity of the (3)He-B confined in a slab geometry. The (3)He-B under a magnetic field is separated to two different sub-phases: the symmetry protected topological phase and non-topological phase. The former phase is characterized by the existence of symmetry protected Majorana fermions. The topological phase transition between them is triggered by the spontaneous breaking of a hidden discrete symmetry. The critical field is quantitatively determined from the microscopic calculation that takes account of magnetic dipole interaction of the (3)He nucleus. It is also demonstrated that odd-frequency even-parity Cooper pair amplitudes are emergent in low-lying quasiparticles. The key ingredients, symmetry protected Majorana fermions and odd-frequency pairing, bring an important consequence that the coupling of the surface states to an applied field is prohibited by the hidden discrete symmetry, while the topological phase transition with the spontaneous symmetry breaking is accompanied by anomalous enhancement and anisotropic quantum criticality of surface spin susceptibility. We also illustrate common topological features between topological crystalline superconductors and symmetry protected topological superfluids, taking UPt3 and Rashba superconductors as examples.
由于超流³He具有丰富的对称性以及成熟的体超流知识,它为研究拓扑与对称性的交织提供了一个典型系统。本文从多方面综述了在理解³He拓扑超流方面的最新进展,包括对称性考量、杰克维 - 雷比指数定理以及准经典理论。特别关注了限制在平板几何结构中的³He - B的对称性保护拓扑超流。处于磁场中的³He - B被分为两个不同的子相:对称性保护拓扑相和非拓扑相。前一个相的特征是存在对称性保护的马约拉纳费米子。它们之间的拓扑相变由一个隐藏离散对称性的自发破缺触发。通过考虑³He原子核的磁偶极相互作用的微观计算定量确定了临界场。还证明了在低能准粒子中出现了奇频率偶宇称库珀对振幅。关键要素,即对称性保护的马约拉纳费米子和奇频率配对,带来了一个重要结果:隐藏离散对称性禁止表面态与外加场的耦合,而伴随着自发对称性破缺的拓扑相变伴随着表面自旋磁化率的反常增强和各向异性量子临界性。我们还以UPt3和拉什巴超导体为例,阐述了拓扑晶体超导体和对称性保护拓扑超流体之间的共同拓扑特征。