Influence of electron-phonon interaction on soliton mediated spin-charge conversion effects in two-component polymer model |
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Authors: | S Sergeenkov F Moraes FM Araujo-Moreira |
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Institution: | a Departamento de Física e Engenharia Física, Grupo de Materiais e Dispositivos, Centro Multidisciplinar para o Desenvolvimento de Materiais Cerâmicos, Universidade Federal de São Carlos, 13565-905 São Carlos, SP, Brazil b Departamento de Física, Universidade Federal da Paraíba, 58051-970 João Pessoa, PB, Brazil |
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Abstract: | By mapping a Hubbard-like model describing a two-component polymer in the presence of strong enough electron-phonon interactions (κ) onto the system of two coupled nonlinear Schrödinger 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(κ) and S(κ), the model also predicts a decrease of soliton velocity with κ as well as spin-charge conversion effects which manifest themselves through an explicit S(Q,Ω) dependence (with Ω 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. |
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Keywords: | Conducting polymers Electron-phonon interactions Solitons Charge fractionalization Spin-charge conversion effects |
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