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Spin-Lattice Coupling and Superconductivity in Fe Pnictides

机译:铁离子的自旋-晶格耦合和超导

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We consider strong spin-lattice and spin-phonon coupling in iron pnictides and discuss its implications on superconductivity. Strong magneto-volume effect in iron compounds has long been known as the Invar effect. Fe pnictides also exhibit this effect, reflected in particular on the dependence of the magnetic moment on the atomic volume of Fe defined by the positions of the nearest neighbor atoms. Through the phenomenological Landau theory, developed on the basis of the calculations by the density functional theory (DFT) and the experimental results, we quantify the strength of the spin-lattice interaction as it relates to the Stoner criterion for the onset of magnetism. We suggest that the coupling between electrons and phonons through the spin channel may be sufficiently strong to be an important part of the superconductivity mechanism in Fe pnictides.
机译:我们考虑了铁素体中的强自旋-晶格和自旋-声子耦合,并讨论了其对超导性的影响。铁化合物中的强磁体积效应长期以来被称为因瓦效应。 Fe杀菌剂也表现出这种作用,特别是取决于磁矩对由最近邻原子的位置定义的Fe原子体积的依赖性。通过在密度泛函理论(DFT)的计算和实验结果的基础上发展起来的现象学Landau理论,我们量化了自旋-晶格相互作用的强度,因为它与斯托纳准则有关。我们建议通过自旋通道的电子和声子之间的耦合可能足够强,从而成为铁素体超导机制的重要组成部分。

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