Belopolski Ilya, Xu Su-Yang, Sanchez Daniel S, Chang Guoqing, Guo Cheng, Neupane Madhab, Zheng Hao, Lee Chi-Cheng, Huang Shin-Ming, Bian Guang, Alidoust Nasser, Chang Tay-Rong, Wang BaoKai, Zhang Xiao, Bansil Arun, Jeng Horng-Tay, Lin Hsin, Jia Shuang, Hasan M Zahid
Laboratory for Topological Quantum Matter and Spectroscopy (B7), Department of Physics, Princeton University, Princeton, New Jersey 08544, USA.
Centre for Advanced 2D Materials and Graphene Research Centre, National University of Singapore, 6 Science Drive 2, Singapore 117546, Singapore.
Phys Rev Lett. 2016 Feb 12;116(6):066802. doi: 10.1103/PhysRevLett.116.066802. Epub 2016 Feb 10.
The recent discovery of the first Weyl semimetal in TaAs provides the first observation of a Weyl fermion in nature and demonstrates a novel type of anomalous surface state, the Fermi arc. Like topological insulators, the bulk topological invariants of a Weyl semimetal are uniquely fixed by the surface states of a bulk sample. Here we present a set of distinct conditions, accessible by angle-resolved photoemission spectroscopy (ARPES), each of which demonstrates topological Fermi arcs in a surface state band structure, with minimal reliance on calculation. We apply these results to TaAs and NbP. For the first time, we rigorously demonstrate a nonzero Chern number in TaAs by counting chiral edge modes on a closed loop. We further show that it is unreasonable to directly observe Fermi arcs in NbP by ARPES within available experimental resolution and spectral linewidth. Our results are general and apply to any new material to demonstrate a Weyl semimetal.
最近在TaAs中首次发现了外尔半金属,这是首次在自然界中观察到外尔费米子,并展示了一种新型的反常表面态——费米弧。与拓扑绝缘体一样,外尔半金属的体拓扑不变量由体样品的表面态唯一确定。在此,我们提出了一组通过角分辨光电子能谱(ARPES)可实现的不同条件,每个条件都能在表面态能带结构中展示拓扑费米弧,且对计算的依赖最小。我们将这些结果应用于TaAs和NbP。首次通过计算闭环上的手性边缘模式,我们严格证明了TaAs中的陈数不为零。我们进一步表明,在现有的实验分辨率和谱线宽度范围内,通过ARPES直接观察NbP中的费米弧是不合理的。我们的结果具有普遍性,适用于任何证明为外尔半金属的新材料。