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Density functional study of ferromagnetism in alkali metal thin films

机译:碱金属薄膜中铁磁性的密度泛函研究

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Electronic and magnetic structures of (1 0 0) films of K and Cs, having thicknesses of one to seven layers, are calculated within the plane-wave projector augmented wave (PAW) formalism of the density functional theory (DFT), using both local spin density approximation (LSDA) and the PW91 generalized gradient approximation (GGA). Only a six-layer Cs film is found to have a ferromagnetic (FM) state which is degenerate with a paramagnetic (PM) state within the accuracy of these calculations. These results are compared with those obtained from calculations on a finite-thickness uniform jellium model (UJM), and it is argued that within LSDA or GGA, alkali metal thin films cannot be claimed to have an FM ground state. Relevance of these results to the experiments on transition metal-doped alkali metal thin films and bulk hosts are also discussed.
机译:在密度泛函理论(DFT)的平面波投影仪增强波(PAW)形式中,使用两个局部函数,计算了厚度为1到7层的K和Cs的(1 0 0)膜的电子和磁性结构自旋密度近似(LSDA)和PW91广义梯度近似(GGA)。在这些计算的精度范围内,仅发现六层Cs膜具有铁磁(FM)状态,并以顺磁(PM)状态退化。将这些结果与通过有限厚度均匀胶体模型(UJM)计算获得的结果进行了比较,并认为在LSDA或GGA中,不能声称碱金属薄膜具有FM基态。还讨论了这些结果与过渡金属掺杂碱金属薄膜和块状主体的实验的相关性。

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