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Solving rate equations for electron tunneling via discrete quantum states - art. no. 045317

机译:通过离散量子态进行电子隧穿的求解速率方程-艺术没有。 045317

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We consider the form of the current-voltage curves generated when tunneling spectroscopy is used to measure the energies of individual electronic energy levels in nanometer-scale systems. We point out that the voltage positions of the tunneling resonances can undergo temperature-dependent shifts, leading to errors in spectroscopic measurements that are proportional to the temperature. We do this by solving the set of rate equations that can be used to describe electron tunneling via discrete quantum states, for a number of cases important for comparison to experiments, including (1) when just one spin-degenerate level is accessible for transport, (2) when two spin-degenerate levels are accessible, with no variation in electron-electron interactions between eigenstates, and (3) when two spin-degenerate levels are accessible, but with variations in electron-electron interactions. We also comment on the general case with an arbitrary number of accessible levels. In each case we analyze the voltage positions, amplitudes, and widths of the current steps due to the quantum states. [References: 16]
机译:我们考虑使用隧道光谱法测量纳米级系统中各个电子能级的能量时产生的电流-电压曲线的形式。我们指出,隧穿共振的电压位置可能会发生温度相关的偏移,从而导致光谱测量中的误差与温度成正比。为此,我们通过求解速率方程组来解决这一问题,该速率方程组可用于描述通过离散量子态进行电子隧穿的情况,这对于与实验进行比较的许多重要情况而言,包括(1)当只有一个自旋简并能级可用于传输时, (2)当两个自旋简并能级可访问时,本征态之间的电子-电子相互作用没有变化;(3)当两个自旋简并能级可访问但电子-电子相互作用时有变化。我们还对具有任意数量的可访问级别的一般情况进行评论。在每种情况下,我们都会分析由于量子态而引起的电流阶跃的电压位置,幅度和宽度。 [参考:16]

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