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Detecting quadrupole: a hidden source of magnetic anisotropy for Manganese alloys

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arxiv 2005.03249 v1 pith:PMW2EWYD submitted 2020-05-07 cond-mat.mtrl-sci

Detecting quadrupole: a hidden source of magnetic anisotropy for Manganese alloys

classification cond-mat.mtrl-sci
keywords alloysmagneticorbitalanisotropydeltamaterialsmn-basedquadrupole
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Mn-based alloys exhibit unique properties in the spintronics materials possessing perpendicular magnetic anisotropy (PMA) beyond the Fe and Co-based alloys. It is desired to figure out the quantum physics of PMA inherent to Mn-based alloys, which have never been reported. Here, the origin of PMA in ferrimagnetic Mn$_{3-{\delta}}$Ga ordered alloys is investigated to resolve antiparallel-coupled Mn sites using x-ray magnetic circular and linear dichroism (XMCD/XMLD) and a first-principles calculation. We found that the contribution of orbital magnetic moments in PMA is small from XMCD and that the finite quadrupole-like orbital distortion through spin-flipped electron hopping is dominant from XMLD and theoretical calculations. These findings suggest that the spin-flipped orbital quadrupole formations originate from the PMA in Mn$_{3-{\delta}}$Ga and bring the paradigm shift in the researches of PMA materials using x-ray magnetic spectroscopies.

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