论文标题

动量空间中的非平衡拓扑旋转纹理

Nonequilibrium topological spin textures in momentum space

论文作者

Zhang, Xiao-Xiao, Nagaosa, Naoto

论文摘要

多体系统的非平衡量子动力​​学是凝结物理学的前沿。各种时间分辨的光谱技术的最新进展继续揭示了丰富的现象。角度分辨光发射光谱(ARPE)作为一种强大的技术可以在激发后沿时间轴沿时间轴旋转。但是,动量空间中旋转纹理的动力学大部分仍未开发。在这里,我们从理论上证明了真实或磁掺杂的拓扑绝缘子的光激发表面状态显示了新型的拓扑旋转纹理,即龙卷风般的样式,在自旋分辨的Arpes中。我们系统地揭示了它是独特的非平衡光诱导拓扑绕组现象的起源。由于材料和光的所有内在和外在拓扑螺旋因子都以强大而精致的方式嵌入,因此龙卷风模式不仅允许对这种重要系统信息进行出色的层析成像,而且还可以实现各种独特的二分性二分性拓扑转换。这些结果打开了量子材料中非平衡拓扑态的新方向。

Nonequilibrium quantum dynamics of many-body systems is the frontier of condensed matter physics; recent advances in various time-resolved spectroscopic techniques continue to reveal rich phenomena. Angle-resolved photoemission spectroscopy (ARPES) as one powerful technique can resolve electronic energy, momentum, and spin along the time axis after excitation. However, dynamics of spin textures in momentum space remains mostly unexplored. Here we demonstrate theoretically that the photoexcited surface state of genuine or magnetically doped topological insulators shows novel topological spin textures, i.e., tornado-like patterns, in the spin-resolved ARPES. We systematically reveal its origin as a unique nonequilibrium photoinduced topological winding phenomenon. As all intrinsic and extrinsic topological helicity factors of both material and light are embedded in a robust and delicate manner, the tornado patterns not only allow a remarkable tomography of such important system information, but also enable various unique dichroic topological switchings of the momentum-space spin texture. These results open a new direction of nonequilibrium topological spin states in quantum materials.

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