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Ab initio study of the alternating current impedance of a molecular junction

机译:从头开始研究分子结的交流阻抗

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The small-bias conductance of the C_6 molecule,stretched between two metallic leads,is studied using time-dependent density functional theory within the adiabatic local density approximation.The leads are modeled by jellium slabs,the electronic and the current density are described on a grid,whereas the core electrons and the highly oscillating valence orbitals are approximated using standard norm-conserving pseudopotentials.The jellium leads are supplemented by a complex absorbing potential that serves to absorb charge reaching the edge of the electrodes and hence mimic irreversible flow into the macroscopic metal.The system is rapidly exposed to a ramp potential directed along the C_6 axis,which gives rise to the onset of charge and current oscilaltions.As time progresses,a fast redistribution of the molecular charge is observed,which translates into a direct current response.Accompanying the dc signal,alternating current fluctuations of charge and currents within the molecule and the metallic leads are observed.These form the complex impedance of the molecule and are especially strong at the plasmon frequency of the leads and the lowest excitation peak of C_6.We study the molecular conductance in two limites:the strong coupling limit,where the edge atoms of the chain are submerged in the jellium and the weak coupling case,where the carbon atoms and the leads do not overlap spatially.
机译:在绝热局部密度近似的范围内,使用时变密度泛函理论研究了C_6分子在两个金属引线之间伸展的小偏导率。通过Jelium平板对引线建模,电子和电流密度描述在网格,而核心电子和高度振荡的价态轨道则使用标准的守恒准伪势来近似。leads铅具有复杂的吸收势,该势能用来吸收到达电极边缘的电荷,从而模拟不可逆流进入宏观金属。系统迅速暴露于沿C_6轴定向的斜坡电势,这会引起电荷和电流振荡的发生。随着时间的流逝,观察到分子电荷的快速重新分布,转化为直流电响应伴随直流信号,交替改变分子和分子内部的电荷和电流的电流波动观察到了金属导线。它们形成了分子的复数阻抗,并且在导线的等离激元频率和C_6的最低激发峰处特别强。我们在两个极限中研究分子电导:强耦合极限,其中边缘碳原子和铅在空间上不重叠,因此链中的原子被淹没在弱耦合的情况下。

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