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X射线吸收计算的自洽方面。

Self-consistent aspects of x-ray absorption calculations.

作者信息

Bunău O, Joly Y

机构信息

Institut Néel, CNRS and Université Joseph Fourier, BP 166, F-38042 Grenoble Cedex 9, France.

出版信息

J Phys Condens Matter. 2009 Aug 26;21(34):345501. doi: 10.1088/0953-8984/21/34/345501. Epub 2009 Aug 5.

Abstract

We implemented a self-consistent, real-space x-ray absorption calculation within the FDMNES code. We performed the self-consistency within several schemes and identified which one is the most appropriate. We show a method that allows a rigorous setting of the Fermi level and thus an estimation of the energy cutoff for the identification and elimination of the occupied states. We investigated what are the structures where one can afford performing the self-consistent calculation at a lesser cluster radius than the absorption one. We exemplify the effects of the self-consistency at the K-edge and for several reference cases, including the copper Cu and the rutile TiO(2). We verified the robustness of our procedure on the transitional 3d and 4d elements. Although amelioration can be noticed, the self-consistency performed at the K-edge does not bring a major improvement of the calculated spectra. Taking into consideration a non-self-consistent, non-spherical potential gives better results than a self-consistent muffin-tin approximation calculation.

摘要

我们在FDMNES代码中实现了一种自洽的实空间X射线吸收计算。我们在几种方案中执行了自洽性,并确定了哪一种最为合适。我们展示了一种方法,该方法允许严格设定费米能级,从而估计用于识别和消除占据态的能量截止值。我们研究了哪些结构能够在比吸收计算时更小的团簇半径下进行自洽计算。我们举例说明了K边处自洽性的影响以及几个参考案例,包括铜(Cu)和金红石型二氧化钛(TiO₂)。我们验证了该程序对于过渡3d和4d元素的稳健性。尽管可以注意到有所改进,但在K边处执行的自洽性并没有给计算光谱带来重大改善。考虑非自洽的非球形势比自洽的 muffin-tin近似计算能给出更好的结果。

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