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Rashba coupling amplification by a staggered crystal field

机译:交错晶体场的Rashba耦合放大

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摘要

There has been increasing interest in materials where relativistic effects induce non-trivial electronic states with promise for spintronics applications. One example is the splitting of bands with opposite spin chirality produced by the Rashba spin-orbit coupling in asymmetric potentials. Sizable splittings have been hitherto obtained using either heavy elements, where this coupling is intrinsically strong, or large surface electric fields. Here by means of angular resolved photoemission spectroscopy and first-principles calculations, we give evidence of a large Rashba coupling of 0.25 eV Å, leading to a remarkable band splitting up to 0.15 eV with hidden spin-chiral polarization in centrosymmetric BaNiS2. This is explained by a huge staggered crystal field of 1.4 V Å−1, produced by a gliding plane symmetry, that breaks inversion symmetry at the Ni site. This unexpected result in the absence of heavy elements demonstrates an effective mechanism of Rashba coupling amplification that may foster spin-orbit band engineering.
机译:相对论效应引起非平凡电子态的材料越来越引起人们的兴趣,并有望用于自旋电子学。一个例子是在不对称电势中由Rashba自旋轨道耦合产生的具有相反自旋手性的谱带分裂。迄今为止,已经使用重元素(本质上是强耦合)或大表面电场来获得可观的分裂。在这里,通过角分辨光发射光谱法和第一性原理计算,我们给出了0.25 eVÅ的大Rashba耦合的证据,导致在中心对称BaNiS2中显着的谱带分裂达到0.15 eV,并且具有隐藏的自旋手性极化。这可以通过滑动面对称产生的1.4 VÅ -1 巨大的交错晶体场来解释,该场错开了Ni位置的反演对称性。缺少重元素的这一出乎意料的结果表明,Rashba偶联扩增的有效机制可能促进自旋轨道带工程。

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