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利用密度泛函理论描述有限温度下的缓慢变化涨落:钆中的局域磁矩与镍的“非局域”磁矩

Using density functional theory to describe slowly varying fluctuations at finite temperatures: local magnetic moments in Gd and the 'not so local' moments of Ni.

作者信息

Staunton Julie B, Marmodoro Alberto, Ernst Arthur

机构信息

Department of Physics, University of Warwick, Coventry, CV4 7AL, UK.

出版信息

J Phys Condens Matter. 2014 Jul 9;26(27):274210. doi: 10.1088/0953-8984/26/27/274210. Epub 2014 Jun 17.

Abstract

We briefly describe the density functional theory (DFT)-based 'disordered local moment' (DLM) picture for magnetism at finite temperatures. It shows how relatively slowly fluctuating local moments can emerge from the interacting electrons of many materials. Such entities have rigid magnitudes and fluctuate their orientations from atomic site to atomic site on a timescale long compared to other electronic times. We illustrate this theory with calculations of the magnetocaloric effect in Gd where we find excellent agreement with experiments. Fluctuating moments do not appear to establish naturally over such small regions for some other materials. We show how the DFT-DLM theory can be extended to these materials with the use of the Korringa-Kohn-Rostoker nonlocal coherent potential approximation (KKR-NLCPA) to allow for more extensive, slow magnetic fluctuations. We present the first application of this approach by revisiting the description of the magnetic fluctuations prevalent in the paramagnetic state of nickel. We find that local moments can emerge above Tc and that these form coherently over small clumps of atomic sites (4-8 sites).

摘要

我们简要描述了基于密度泛函理论(DFT)的有限温度下磁性的“无序局域矩”(DLM)图景。它展示了相对缓慢波动的局域矩如何从许多材料的相互作用电子中产生。这些实体具有固定的大小,并且在比其他电子时间尺度长得多的时间尺度上,其取向在不同原子位置之间波动。我们通过计算钆的磁热效应来说明这一理论,在该计算中我们发现与实验结果非常吻合。对于其他一些材料,波动矩似乎不会在如此小的区域自然形成。我们展示了如何通过使用科林加 - 科恩 - 罗斯托克尔非局域相干势近似(KKR - NLCPA)将DFT - DLM理论扩展到这些材料,以允许更广泛、缓慢的磁波动。我们通过重新审视镍顺磁态中普遍存在的磁波动描述,首次应用了这种方法。我们发现,局域矩可以在居里温度以上出现,并且这些局域矩在小的原子位置团簇(4 - 8个位置)上相干形成。

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