Chiral orbital angular momentum perspective on surface electronic states of SrTiO3 and KTaO3
ORAL
Abstract
Tight-binding models suitable for the recently observed surface electronic bands of $\rm{SrTiO_3}$ and $\rm{KTaO_3}$ are analyzed with a view to bringing out the relevance of chiral orbital angular momentum (OAM) structure in the $t_{2g}$-derived bands. With the inversion symmetry breaking at the surface, orbital chiralities of the three bands (neglecting spin splitting) are $m = +1,0,-1$. Further inclusion of spin-orbit interaction induces linear Rashba splitting on the chiral OAM bands, but not in the non-chiral, $m=0$ band structure. Our predictions can be easily verified by circular dichroism ARPES experiment.
*This work is supported by the NRF grant (No. 2013R1A2A1A01006430). P. J. K. acknowledges support from the Global Ph. D. Fellowship Program (NRF-2012).
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