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Asymmetry induces long-lasting energy current transients inside molecular loop circuits

机译:不对称诱导分子回路电路内的长持久的能量电流瞬变

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摘要

Energy transport and conversion at nanoscale have become an important topic of fundamental and applied research, in particular for conceiving ground-breaking solutions in energy-aware digital electronics and energy production. In this work, we propose a formal framework to address time-dependent energy transport inside quantum networks. The approach permits us to investigate how energy transferred to electrons by a femtosecond laser pulse is stored and released in a molecular circuit consisting of two donor-acceptor branches connected to an acceptor chain. Additionally, the two donors may be coupled, creating a loop inside the circuit. Time-resolved analysis reveals that when a difference exists between the two donor-acceptor branches, a loop current occurs and persists during relaxation, while only a small amount of current flows through the acceptor chain. A long-lasting energy flow thus emerges from the asymmetry of the molecular structure.
机译:纳米尺度的能量运输和转换已成为基本和应用研究的重要课题,特别是在能量感知数字电子和能源生产中构建地面破坏解决方案。在这项工作中,我们提出了一个正式的框架来解决Quantum Networks内的时间依赖的能量传输。该方法允许我们研究由飞秒激光脉冲传递给电子的能量如何存储和释放,该分子电路包括连接到受体链的两个供体接受分支。另外,两个施主可以耦合,在电路内产生环路。时间解决分析显示,当两个施主接受者分支之间存在差异时,在松弛期间发生环电流并持续存在,而仅少量电流流过受体链。因此,从分子结构的不对称产生的长持久的能量流动。

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  • 来源
    《Physical review》 |2019年第2期|024308.1-024308.9|共9页
  • 作者单位

    Aix Marseille Univ Univ Toulon IM2NP CNRS Marseille France;

    Aix Marseille Univ Univ Toulon IM2NP CNRS Marseille France|Grad Univ Okinawa Inst Sci & Technol Onna Son Okinawa 9040495 Japan;

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  • 正文语种 eng
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