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Bias effects on the electronic spectrum of a molecular bridge

机译:偏置对分子桥电子光谱的影响

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In this paper the effect of bias and geometric symmetry breaking on the electronic spectrum of a model molecular system is studied. Geometric symmetry breaking can either enhance the dissipative effect of the bias, where spectral peaks are disabled, or enable new excitations that are absent under zero bias conditions. The spectral analysis is performed on a simple model system by solving for the electronic response to an instantaneously impulsive perturbation in the dipole approximation. The dynamical response is extracted from the electronic equations of motion as expressed by the Keldysh formalism. This expression provides for the accurate treatment of the electronic structure of a bulk-coupled system at the chosen model Hamiltonian electronic structure level.
机译:本文研究了偏压和几何对称性破裂对模型分子系统电子光谱的影响。几何对称性破坏可以增强偏置的耗散效果(在禁用频谱峰的情况下),或者启用零偏置条件下不存在的新激励。通过求解偶极近似中对瞬时脉冲摄动的电子响应,在简单的模型系统上执行光谱分析。动力学响应是从Keldysh形式主义表示的电子运动方程中提取的。该表达式提供了在选定的模型汉密尔顿电子结构级别上对体耦合系统的电子结构的精确处理。

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