Yang Kaijie, Wang Yuanxi, Liu Chao-Xing
Department of Physics, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
2-Dimensional Crystal Consortium, Materials Research Institute, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Phys Rev Lett. 2022 Apr 22;128(16):166601. doi: 10.1103/PhysRevLett.128.166601.
Nontrivial momentum-space spin texture of electrons can be induced by spin-orbit coupling and underpins various spin transport phenomena, such as current-induced spin polarization and the spin Hall effect. In this work, we find a nontrivial spin texture, spin antivortex, can appear at certain momenta on the Γ-K line in a 2D monolayer Pb on top of SiC. Different from spin vortex due to the band degeneracy in the Rashba model, the existence of this spin antivortex is guaranteed by the Poincaré-Hopf theorem and thus topologically stable. Accompanied with this spin antivortex, a Lifshitz transition of Fermi surfaces occurs at certain momenta on the K-M line, and both phenomena are originated from the anticrossing between the j=1/2 and j=3/2 bands. A rapid variation of the response coefficients for both the current-induced spin polarization and spin Hall conductivity is found when the Fermi energy is tuned around the spin antivortex. Our work demonstrates the monolayer Pb as a potentially appealing platform for spintronic applications.
电子的非平凡动量空间自旋纹理可由自旋轨道耦合诱导产生,并支撑各种自旋输运现象,如电流诱导的自旋极化和自旋霍尔效应。在这项工作中,我们发现一种非平凡的自旋纹理——自旋反涡旋,能够出现在碳化硅(SiC)衬底上二维单层铅(Pb)的Γ - K线上的特定动量处。与Rashba模型中由于能带简并导致的自旋涡旋不同,这种自旋反涡旋的存在由庞加莱 - 霍普夫定理保证,因此具有拓扑稳定性。伴随着这种自旋反涡旋,费米面在K - M线上的特定动量处发生里夫希茨转变,并且这两种现象均源于j = 1/2和j = 3/2能带之间的反交叉。当费米能量在自旋反涡旋附近调谐时,发现电流诱导的自旋极化和自旋霍尔电导率的响应系数会发生快速变化。我们的工作表明单层Pb是一个潜在有吸引力的自旋电子学应用平台。