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Orbital-selective spin texture and its manipulation in a topological insulator

机译:拓扑绝缘子中的轨道选择自旋织构及其操纵

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摘要

Topological insulators represent a new quantum state of matter that are insulating in the bulk but metallic on the edge or surface. In the Dirac surface state, it is well-established that the electron spin is locked with the crystal momentum. Here we report a new phenomenon of the spin texture locking with the orbital texture in a topological insulator Bi2Se3 . We observe light-polarization-dependent spin texture of both the upper and lower Dirac cones that constitutes strong evidence of the orbital-dependent spin texture in Bi2Se3 . The different spin texture detected in variable polarization geometry is the manifestation of the spin-orbital texture in the initial state combined with the photoemission matrix element effects. Our observations provide a new orbital degree of freedom and a new way of light manipulation in controlling the spin structure of the topological insulators that are important for their future applications in spin-related technologies.
机译:拓扑绝缘体代表了一种新的物质量子态,其在整体中是绝缘的,但在边缘或表面上是金属的。众所周知,在狄拉克表面状态下,电子自旋被晶体动量锁定。在这里,我们报告了拓扑绝缘体Bi 2 Se 3 中自旋纹理与轨道纹理锁定的新现象。我们观察到上下狄拉克锥的光偏振依赖性自旋织构,构成了Bi 2 Se 3 中轨道依赖性自旋织构的有力证据。在可变极化几何中检测到的不同自旋纹理是在初始状态下自旋轨道纹理与光发射矩阵元素效应相结合的表现。我们的观察为控制拓扑绝缘子的自旋结构提供了新的轨道自由度和光操纵的新方法,这对于它们在自旋相关技术中的未来应用至关重要。

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