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首页> 外文期刊>Acta Physica Polonica >One-Electron Excitations vs. Collective Excitations in the 1D Falicov-Kimball Model with Hund Coupling at Half Filling
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One-Electron Excitations vs. Collective Excitations in the 1D Falicov-Kimball Model with Hund Coupling at Half Filling

机译:半填充时耦合耦合的一维Falicov-Kimball模型中的单电子激发与集体激发

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摘要

The Falicov-Kimball model enriched with Ising-type Hund coupling between spins of itinerant electrons and magnetic ions is studied exactly on finite 1D rings. At half filling (one electron per site) and for the density of magnetic ions equal to 1/2 it is shown that many-electron collective excitations coupled to spin reorientations of the magnetic ions have much lower energy than single electron excitations. This property is caused by energy gaps formed at the Fermi levels in one-electron energy spectra of all relevant magnetic configurations of the ions. Consequently, low temperature properties of the system are not driven by one-particle, elementary electron excitations but many-particle collective excitations, where both electrons and spins of magnetic ions are involved. In addition, it is shown that many-body excitation spectra derived both from spin fluctuations and from charge fluctuations have a regular structure.
机译:精确地在有限的一维环上研究了Falicov-Kimball模型,该模型在巡回电子的自旋与磁性离子的自旋之间富集了伊辛型洪德耦合。在半填充时(每个位点一个电子),并且对于等于1/2的磁性离子密度,表明与磁性离子的自旋重新取向耦合的多电子集体激发的能量要比单电子激发的能量低得多。此属性是由离子的所有相关磁性构型的单电子能谱中的费米能级形成的能隙引起的。因此,系统的低温特性不是由单粒子的基本电子激发驱动的,而是由多粒子的集体激发驱动的,电子和磁性离子的自旋都参与其中。另外,还表明,既来自自旋涨落又来自电荷涨落的多体激发光谱具有规则的结构。

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