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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Transient Dynamics in Molecular Junctions: Picosecond Resolution from dc Measurements by a Laser Pulse Pair Sequence Excitation
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Transient Dynamics in Molecular Junctions: Picosecond Resolution from dc Measurements by a Laser Pulse Pair Sequence Excitation

机译:分子交界处的瞬态动力学:激光脉冲对序列激励在直流测量中的皮秒分辨率

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摘要

Molecular electronic devices are a promising future alternative to standard electronic switches due to their fast response on the pico-second time scale. An experimental scheme is proposed in order to correlate pico-second dynamics in molecular junctions to steady state current measurements. The time resolution is obtained using a sequence of ultrafast pulse pair excitations with a controlled time delay between the two pulses in each pair. The dependence of the steady state current on the delay time reveals the periods of molecular dynamics on the sub-pico-second time scale. The approach is demonstrated theoretically for a generic model of a single molecule based coherent electron pump. Theoretical analysis enables to correlate the steady state current to the underlying intramolecular dynamics.
机译:分子电子设备具有皮秒级的快速响应能力,因此有望替代标准电子开关。为了将分子结中的皮秒动力学与稳态电流测量相关联,提出了一种实验方案。使用一系列超快脉冲对激励来获得时间分辨率,每对中的两个脉冲之间具有受控的时间延迟。稳态电流对延迟时间的依赖性揭示了亚皮秒级的分子动力学周期。理论上针对基于单分子的相干电子泵的通用模型论证了该方法。理论分析使稳态电流与潜在的分子内动力学相关联。

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