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Plasmon Excitations in Spin-Polarized Iron Atomic Chains:A Time-Dependent Density Functional Theory Study

机译:旋转偏振铁原子链中的等离子体激发:时间依赖性密度泛函理论研究

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By using the time-dependent density functional theory calculations,we study the plasmon excitations in Fe atomic chains with different numbers of atom and different Fe-Fe separations,which are now possible to fabricate experimentally.Because of the Fe valence 3d orbitals and the spin polarization,the excitations along the chain (longitudinal (L) mode) and perpendicular to the chain (transverse (T) modes) are found to be largely different from those in noble metal and alkali metal atomic chains.First,the strength of dipole response becomes weaker due to the more localized Fe 3d states;Second,the L mode is mixed with some multipole contribution;Third,the end mode of the T modes is absent.
机译:通过使用时间依赖性密度函数理论计算,我们研究了不同数量的原子链和不同的Fe-Fe分离中的Fe原子链中的等离子体激发,现在可以通过实验制造。因为Fe价3D轨道和旋转。偏振,沿链条(纵向(L)模式)和垂直于链条(横向(T)模式)的激发将主要与贵金属和碱金属原子链的那些不同。偶极响应的强度由于更局限性的FE 3D状态而变得较弱;第二,L模式与一些多极贡献混合;第三,不存在T模式的结束模式。

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