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Influence of electron-phonon interaction on soliton mediated spin-charge conversion effects in two-component polymer model

机译:两组分聚合物模型中电子-声子相互作用对孤子介导的自旋电荷转化效应的影响

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By mapping a Hubbard-like model describing a two-component polymer in the presence of strong enough electron-phonon interactions (kappa) onto the system Of two coupled nonlinear Schrodinger equations with U(2) symmetry group, some nontrivial correlations between topological solitons mediated charge Q and spin S degrees of freedom are obtained. Namely, in addition to a charge fractionalization and reentrant like behavior of both Q(kappa) and S(kappa), the model also predicts a decrease of soliton velocity with kappa as well as spin-charge conversion effects which manifest themselves through an explicit S(Q, Omega) dependence (with Omega being a mixing angle between spin-up and spin-down electron amplitudes). A possibility to observe the predicted effects in low-dimensional systems with charge and spin soliton carriers is discussed.
机译:通过将描述存在足够强的电子-声子相互作用(kappa)的两组分聚合物的类似Hubbard的模型映射到系统上具有U(2)对称群的两个耦合非线性Schrodinger方程组,介导的拓扑孤子之间的一些非平凡相关性获得电荷Q和自旋S的自由度。即,除了Q(kappa)和S(kappa)的电荷分馏和类似折返的行为外,该模型还预测了孤子速度随kappa的降低以及自旋电荷转换效应,这些效应通过显式的S表现出来。 (Q,Omega)依赖性(Omega是自旋向上和自旋向下电子幅度之间的混合角)。讨论了在带有电荷和自旋孤子载体的低维系统中观察预测效应的可能性。

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