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Structural and doping effects in the half-metallic double perovskite A2CrWO6 (A = Sr, Ba, and Ca)

机译:半金属双钙钛矿A2CrWO6(A = Sr,Ba和Ca)中的结构和掺杂效应

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摘要

The structural, transport, magnetic, and optical properties of the double perovskite A2CrWO6 with A = Sr,Ba,Ca have been studied. By varying the alkaline earth ion on the A site, the influence of steric effects on the Curie temperature TC and the saturation magnetization has been determined. A maximum TC = 458 K was found for Sr2CrWO6 having an almost undistorted perovskite structure with a tolerance factor f~1. For Ca2CrWO6 and Ba2CrWO6 structural changes result in a strong reduction of TC. Our study strongly suggests that for the double perovskites in general an optimum TC is achieved only for f~1, that is, for an undistorted perovskite structure. Electron doping in Sr2CrWO6 by a partial substitution of Sr2+ by La3+ was found to reduce both TC and the saturation magnetization Ms. The reduction of Ms could be attributed both to band structure effects and the Cr/W antisites induced by doping. Band structure calculations for Sr2CrWO6 predict an energy gap in the spin-up band, but a finite density of states for the spin-down band. The predictions of the band structure calculation are consistent with our optical measurements. Our experimental results support the presence of a kinetic energy driven mechanism in A2CrWO6, where ferromagnetism is stabilized by a hybridization of states of the nonmagnetic W site positioned in between the high spin Cr sites.
机译:研究了A = Sr,Ba,Ca的双钙钛矿A2CrWO6的结构,输运,磁性和光学性质。通过改变A位上的碱土金属离子,已经确定了空间效应对居里温度TC和饱和磁化强度的影响。对于具有几乎不变形的钙钛矿结构且公差因子为f〜1的Sr2CrWO6,发现最大TC = 458K。对于Ca2CrWO6和Ba2CrWO6,结构变化导致TC大大降低。我们的研究强烈建议,一般而言,对于双钙钛矿,仅对于f〜1,即对于未变形的钙钛矿结构,才能获得最佳TC。发现通过用La3 +部分取代Sr2 +来掺杂Sr2CrWO6中的电子会同时降低TC和饱和磁化Ms。Ms的降低既可以归因于能带结构效应,也可以归因于掺杂引起的Cr / W反位。 Sr2CrWO6的能带结构计算可预测自旋带的能隙,但能预测自旋带的有限状态密度。带结构计算的预测与我们的光学测量结果一致。我们的实验结果支持在A2CrWO6中存在动能驱动机制,其中通过位于高自旋Cr位置之间的非磁性W位置的状态的杂化来稳定铁磁性。

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