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bcc 和 fcc Fe 中超出海森堡模型的自旋相互作用。

Spin Interactions in bcc and fcc Fe beyond the Heisenberg Model.

机构信息

Max-Planck-Institute for Intelligent Systems, Stuttgart, Germany.

出版信息

Phys Rev Lett. 2011 Jul 1;107(1):017204. doi: 10.1103/PhysRevLett.107.017204. Epub 2011 Jun 30.

Abstract

Usually, the adiabatic magnetic exchange-energy hypersurface is parametrized in terms of the bilinear Heisenberg interactions in pairs of atoms. For general magnetic configurations, this model is not complete even if it includes pairs with up to infinite interatomic distances. In contrast, the modeling by an in principle infinite spin-cluster expansion is complete for all conceivable magnetic configurations. In the present Letter, it is shown for bcc and fcc iron that a very accurate representation can be reached with a finite expansion with 20 terms which include biquadratic or multispin non-Heisenberg interactions.

摘要

通常,绝热磁交换能量超曲面是用双原子对中的双线性海森堡相互作用来参数化的。对于一般的磁构型,即使包括了具有无限远原子间距离的对,该模型也不完整。相比之下,通过原则上无限的自旋簇展开来建模对于所有可以想象的磁构型都是完整的。在本信中,对于 bcc 和 fcc 铁,证明了通过包含二次或多自旋非海森堡相互作用的 20 项有限展开,可以达到非常精确的表示。

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