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Magnetic dichroism study on Mn_(1.8)Co_(1.2)Ga thin film using a combination of X-ray absorption and photoemission spectroscopy

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arxiv 1501.03962 v1 pith:MAGEAIFA submitted 2015-01-16 cond-mat.mtrl-sci

Magnetic dichroism study on Mn_(1.8)Co_(1.2)Ga thin film using a combination of X-ray absorption and photoemission spectroscopy

classification cond-mat.mtrl-sci
keywords magneticstatesdichroismwerespectroscopydensitiesvalencex-ray
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using circularly polarised radiation and a combination of bulk-sensitive hard X-ray photoelectron spectroscopy and X-ray-absorption spectroscopy (XAS) we studied the electronic and magnetic structure of epitaxial Mn$_{1.8}$Co$_{1.2}$Ga thin films. Spin resolved Bloch spectral functions, density of states as well as charge and magnetisation densities were investigated by a first-principles analysis of full potential, fully relativistic Korringa--Kohn--Rostoker calculations of the electronic structure. The valence states were experimentally investigated by using linear dichroism in the angular distribution and comparing the results to spin-resolved densities of states. The linear dichroism in the valence band enabled a symmetry analysis of the contributing states. The spectra were in good agreement with the theoretical partial density of states. The element-specific, spin-resolved, unoccupied densities of states for Co and Mn were analysed by using XAS and X-ray magnetic circular dichroism (XMCD) at the $L_{3,2}$ edges. The spectra were influenced by strong correlation effects. XMCD was used to extract the site resolved magnetic moments. The experimental values of $m_{\rm Mn}=0.7\:\mu_B$ and $m_{\rm Co}=1.05\:\mu_B$ agree very well with the calculated magnetic moments. Magnetic circular dichroism in angle-resolved photoelectron spectroscopy at the Mn and Co $2p$ core level exhibited a pronounced magnetic dichroism and confirmed the localised character of the Mn $d$ valence states.

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