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Spin-flip processes of polarons by magnetic impurities in conjugated polymers

机译:共轭聚合物中磁性杂质对极化子的自旋翻转过程

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摘要

By employing an adaptive time-dependent density-matrix-renormalization-group method, the spin-flip process of polarons is investigated in a polymer chain with magnetic impurities. Being driven by an external electric field, a polaron carrying both spin 1/2 and charge ±e moves at a constant speed in the polymer chain. When the polaron passes through a specific site, which couples to a magnetic impurity via spin-exchange interaction, a spin-flip process is observed if its spin is antiparallel to the impurity spin. Our results show that the spin-flip probability is enhanced by the on-site Coulomb interaction and increases with increase in the spin-exchange integral. Additionally, some possible applications of the spin-state swap between the polaron and the impurity are discussed.
机译:通过采用自适应的随时间变化的密度矩阵重整化组方法,研究了具有磁性杂质的聚合物链中极化子的自旋翻转过程。受外部电场驱动,携带自旋1/2和电荷±e的极化子在聚合物链中以恒定速度移动。当极化子通过自旋交换相互作用耦合到磁性杂质的特定位点时,如果其自旋与杂质自旋反平行,则会观察到自旋翻转过程。我们的结果表明,自旋翻转概率通过现场库仑相互作用而增强,并且随着自旋交换积分的增加而增加。另外,讨论了极化子和杂质之间的自旋态交换的一些可能的应用。

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