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Exchange interaction mediated ferroelectricity in multiferroic MnTiO 3 with anisotropic orbital hybridization and hole delocalization
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Exchange interaction mediated ferroelectricity in multiferroic MnTiO 3 with anisotropic orbital hybridization and hole delocalization

S.W. Chen, P.A. Lin, H.T. Jeng, S.W. Fu, J.M. Lee, J.F. Lee, C.W. Pao, H. Ishii, K.D. Tsuei, N. Hiraoka, …
Applied Physics Letters, Vol.104(8), 82104
2014

Abstract

We present the orbital structure of MnTiO 3 with polarization dependent x-ray absorption and resonant x-ray emission spectra accompanied with electronic structure calculations. The results clearly indicate a strongly anisotropic O 2p-Mn 3d orbital hybridization whereas the Mn 3d hole state shows a highly delocalized characteristic ascribed to the 3d-4p mixing. The extended Mn 4p orbital could enhance the exchange interaction between Mn (3d)-O (2p)-Mn (3d) leading to an asymmetric charge distribution in Mn-O bonds. The delocalized characteristic of Mn 3d holes is indispensable to the mechanism of spin-dependent-metal-ligand hybridization to explain magnetically induced ferroelectricity. © 2014 AIP Publishing LLC.

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