论文标题
非中心对称超导体BIPD中的特殊狄拉克状态
Exceptional Dirac states in a non-centrosymmetric superconductor, BiPd
论文作者
论文摘要
据信,具有与超导性结合使用的零食材料是实现异国情调物理和先进技术的候选材料。角度分辨的光发射光谱(ARPE)是电子结构的直接探针,已广泛用于研究这些材料。然而,实验通常会在dirac fermions的维度和动量上表现出相互矛盾的结果(例如,BIPD中的狄拉克状态,一种新型的非中心对称超导体),这对于确定对称性,时间逆转不变的动量和其他出现的特性至关重要。我们在各种条件下采用高分辨率ARPES,证明了一种方法来准确地识别Dirac节点的位置,并发现与早期提议的BIPD中Dirac态的二维偏差不是物质特性。这些结果有助于准确揭示了狄拉克状态的各向异性的拓扑。考虑到高阶旋转轨道项,我们已经构建了一个模型的哈密顿量,并证明该模型对观察到的各向异性提供了出色的描述。在本研究中揭示的非中心对称超导体中狄拉克状态的有趣特征预计对拓扑超导体的性质具有显着意义。
Quantum materials having Dirac fermions in conjunction with superconductivity is believed to be the candidate materials to realize exotic physics as well as advanced technology. Angle resolved photoemission spectroscopy (ARPES), a direct probe of the electronic structure, has been extensively used to study these materials. However, experiments often exhibit conflicting results on dimensionality and momentum of the Dirac Fermions (e.g. Dirac states in BiPd, a novel non-centrosymmetric superconductor), which is crucial for the determination of the symmetry, time-reversal invariant momenta and other emerging properties. Employing high-resolution ARPES at varied conditions, we demonstrated a methodology to identify the location of the Dirac node accurately and discover that the deviation from two-dimensionality of the Dirac states in BiPd proposed earlier is not a material property. These results helped to reveal the topology of the anisotropy of the Dirac states accurately. We have constructed a model Hamiltonian considering higher-order spin-orbit terms and demonstrate that this model provides an excellent description of the observed anisotropy. Intriguing features of the Dirac states in a non-centrosymmetric superconductor revealed in this study expected to have significant implication in the properties of topological superconductors.