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Crystal Structure and Magnetic Properties of Non-Stoichiometric Co_2MnGa Heusler Alloy

机译:非化学计量CO_2MNGA Heusler合金的晶体结构和磁性特性

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Crystal structure and magnetic properties of Heusler-alloy Co_(2)MnGa were examined systematically using non-stoichiometric compositions of Co and Mn element from the Czochralski as-grown single crystal samples. The crystalline structure of each sample was characterized by means of X-ray powder diffraction technique. Each sample was treated with and without heat treatment at 923 K for 10 hours. The effects of Co and Mn excess were observed in the lattice constants for both treatments. The L2_(1)-type crystal structure was observed only for the heat-treated samples. The changes in lattice constants are attributed to the substitution of atomic sites. The excess of Co tends to decrease the crystal volume, in opposite to the excess of Mn. In order to investigate the Slater-Pauling rule in the non-stoichiometric samples, the saturation magnetic moments were measured from the field-dependent magnetization measurement for the as-grown samples at 2 K. The deviation from the Slater-Pauling rule was found in the lower concentration of valence electron which associated to the lower total fraction of both Co and Mn. This indicates that the magnetic interactions of these materials cannot only be contributed to the number of valence electron.
机译:利用来自CZOCHRALSKI的单晶样品的非化学计量组合物,系统地检查了HEUSLER-ALLOY CO_(2)MNGA的晶体结构和磁性。通过X射线粉末衍射技术表征每个样品的结晶结构。将每个样品在923k下用热处理处理10小时。在晶格常数中观察到CO和Mn过量的效果用于两种治疗方法。仅针对热处理样品观察L2_(1)型晶体结构。格子常数的变化归因于原子位点的替代。多余的Co倾向于将晶体体积减少,与过量的Mn相反。为了研究非化学计量样本中的梯形水肺部规则,饱和磁性矩测量从2 k处的生长样品的场依赖性磁化测量测量。发现与洼地规则的偏差与CO和Mn的较低总馏分相关的价电子浓度较低。这表明这些材料的磁相互作用不能有助于价值电子的数量。

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