Kim Jimin, Baik Seung Su, Jung Sung Won, Sohn Yeongsup, Ryu Sae Hee, Choi Hyoung Joon, Yang Bohm-Jung, Kim Keun Su
Department of Physics, Yonsei University, Seoul 03722, Korea.
Department of Physics, Pohang University of Science and Technology, Pohang 37673, Korea.
Phys Rev Lett. 2017 Dec 1;119(22):226801. doi: 10.1103/PhysRevLett.119.226801. Epub 2017 Nov 29.
We report the realization of novel symmetry-protected Dirac fermions in a surface-doped two-dimensional (2D) semiconductor, black phosphorus. The widely tunable band gap of black phosphorus by the surface Stark effect is employed to achieve a surprisingly large band inversion up to ∼0.6 eV. High-resolution angle-resolved photoemission spectra directly reveal the pair creation of Dirac points and their movement along the axis of the glide-mirror symmetry. Unlike graphene, the Dirac point of black phosphorus is stable, as protected by space-time inversion symmetry, even in the presence of spin-orbit coupling. Our results establish black phosphorus in the inverted regime as a simple model system of 2D symmetry-protected (topological) Dirac semimetals, offering an unprecedented opportunity for the discovery of 2D Weyl semimetals.
我们报道了在表面掺杂的二维(2D)半导体黑磷中实现新型对称性保护狄拉克费米子。利用黑磷通过表面斯塔克效应可广泛调谐的带隙实现了高达约0.6 eV的惊人的大能带反转。高分辨率角分辨光电子能谱直接揭示了狄拉克点的成对产生及其沿滑移镜对称轴的移动。与石墨烯不同,黑磷的狄拉克点即使在存在自旋轨道耦合的情况下,由于受到时空反演对称性的保护也是稳定的。我们的结果确立了处于反转状态的黑磷作为二维对称性保护(拓扑)狄拉克半金属的简单模型系统,为发现二维外尔半金属提供了前所未有的机会。