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Polaron dynamics in a two-dimensional Holstein-Peierls system

机译:二维Holstein-Peierls系统中的极化子动力学

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A semiclassical model for studying charge transport in a two-dimensional molecular lattice is presented and applied to both a well ordered system and a system with disorder. The model includes both intra- and inter-molecular electron-lattice interactions and the focus of the studies is to describe the dynamics of a charge carrier in the system. In particular, we study the dynamics of the system in which the polaron solution is dynamically stable. It is found that the parameter space for which the polaron is moving through the system is quite restricted and that the polaron is immobile for large electron-phonon coupling and weak intermolecular electron interactions and dynamically unstable and disassociates into a delocalized electronic state decoupled from the lattice for small electron-phonon coupling and strong intermolecular electron interactions. Disorder further limits the parameter space in which the polaron is mobile.
机译:提出了研究二维分子晶格中电荷传输的半经典模型,并将其应用于有序系统和无序系统。该模型包括分子内和分子间的电子-晶格相互作用,研究的重点是描述系统中载流子的动力学。特别是,我们研究了极化子解是动态稳定的系统的动力学。发现极化子在整个系统中移动的参数空间非常有限,极化子对于大的电子-声子耦合和弱的分子间电子相互作用是不动的,并且动态不稳定并解离成与晶格解耦的离域电子态对于小电子-声子耦合和强分子间电子相互作用。混乱进一步限制了极化子在其中移动的参数空间。

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