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Electronic dynamics under effect of a nonlinear Morse interaction and a static electric field

机译:非线性莫尔斯相互作用和静电场作用下的电子动力学

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摘要

Considering non-interacting electrons in a one-dimension alloy in which atoms are coupled by a Morse potential, we study the system dynamics in the presence of a static electric field. Calculations are performed assuming a quantum mechanical treatment for the electronic transport and a classical Hamiltonian model for the lattice vibrations. We report numerical evidence of the existence of a soliton-electron pair, even when the electric field is turned on, and we offer a description of how the existence of such a phase depends on the magnitude of the electric field and the electron-phonon interaction. (C) 2016 Elsevier B.V. All rights reserved.
机译:考虑到一维合金中的非相互作用电子,其中原子通过莫尔斯电势耦合,我们研究了在存在静电电场的情况下的系统动力学。假设对电子传输进行了量子力学处理,对晶格振动采用了经典的汉密尔顿模型进行了计算。我们报告了即使在打开电场的情况下也存在孤子-电子对的数值证据,并且我们描述了这种相的存在如何取决于电场的大小和电子-声子相互作用。 (C)2016 Elsevier B.V.保留所有权利。

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