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Selective modification of the unquenched orbital moment of manganese introduced by carbon dopant in epitaxial Mn5Ge3C0.2/Ge(111) films

机译:在外延MN5Ge3C0.2 / GE(111)薄膜中碳掺杂剂引入的未通式轨道片的选择性修饰

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摘要

Mn-55 NMR was used to investigate the effect of carbon doping on the local magnetic anisotropy in Mn5Ge3 epitaxial films (space-group P6(3)/mcm). It was found that carbon enters interstitially in the vicinity of the 6(g) crystallographic positions, occupying the 2(b) octahedral voids. The magnetic properties of the Mn atoms located in the corners of a host octahedron are strongly modified by the presence of carbon. Their magnetic moment is reduced by 0.7 mu(B) with respect to the pristine Mn5Ge3 film and the anisotropy of their orbital moment, measured as a difference between its value along the hexagonal c direction and on the c plane is reduced to 0.058 mu(B), whereas, in the pristine Mn5Ge3 films, it oscillated every 60 degrees between 0.151 mu(B) and 0. These changes are responsible for a significant decrease in magnetocrystalline anisotropy, which was reported to drop by an order of magnitude upon doping the Mn5Ge3 films with carbon.
机译:使用Mn-55 NMR来研究碳掺杂对Mn5Ge3外延膜中局部磁各向异性的影响(空间组p6(3)/ mcm)。 发现碳在6(g)结晶位置附近,占用2(b)八面体空隙。 位于宿主八面体的拐角中的Mn原子的磁性通过碳的存在强烈改变。 它们相对于原始Mn5Ge3膜的磁矩减小0.7μm(b),并且其轨道片的各向异性,测量其沿六边形C方向和C平面上的值之间的差异减少到0.058μm(b ),而在原始MN5GE3薄膜中,在0.151μ(b)和0之间每60度振荡。这些变化负责磁选晶类各向异性的显着降低,据报道,在掺杂Mn5ge3时逐渐下降 含碳的薄膜。

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