The Electronic And Magnetic Properties Of La0.85zr0.15mno3 Deposited On Srtio3 And Mgo Substrates

JOURNAL OF APPLIED PHYSICS(2014)

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摘要
The electronic and magnetic properties of tetravalent-ion-doped La0.85Zr0.15MnO3 (LZMO) thin films that were epitaxially grown on SrTiO3 (STO) and MgO substrates were studied using temperature-dependent x-ray diffraction (XRD), x-ray absorption near-edge structure, x-ray linear dichroism, and x-ray magnetic circular dichroism at the Mn L-3,L-2- and K-edge. XRD studies reveal that the LZMO thin films have compressive and tensile strains (along the c-axis) on the STO and MgO substrates, respectively. As the temperature is reduced from room temperature to below magnetic transition temperature, the preferentially occupied Mn majority-spin e(g) orbital changes from the in-plane d(x)(-y)(2)(2) to the out-of-plane d(3z)(-r)(2)(2) orbital for LZMO/STO, and vice versa for LZMO/MgO. Experimental results suggest that the new hopping path that is mediated by the Mn2+ ions triggers a stronger d(3z)(-r)(2)(2) orbital ordering of Mn3+ ions and enhances the ferromagnetic coupling between the Mn spin moments of t(2g) electrons in LZMO/STO, whereas the strong tensile strain stabilizes the d(x)(-y)(2)(2) orbital by inducing lattice distortions of the MnO6 octahedra in LZMO/MgO. (C) 2014 AIP Publishing LLC.
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