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Pair-tunneling resonance in the single-electron transport regime

机译:单电子传输体系中的双隧道共振

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摘要

We predict a new electron pair tunneling (PT) resonance in nonlinear transport through quantum dots with positive charging energies exceeding the broadening due to thermal and quantum fluctuations. The PT resonance shows up in the single-electron transport (SET) regime as a peak in the derivative of the nonlinear conductance, d(2)I/dV(2), when the electrochemical potential of one electrode matches the average of two subsequent charge addition energies. For a single level quantum dot (Anderson model) we find the analytic peak shape and the dependence on temperature, magnetic field, and junction asymmetry and compare with the inelastic cotunneling peak which is of the same order of magnitude. In experimental transport spectroscopy the PT resonance may be mistaken for a weak SET resonance judging only by the voltage dependence of its position. Our results provide essential clues to avoid such erroneous interpretation.
机译:我们预测通过量子点的非线性传输中的新电子对隧穿(PT)共振,其正电荷能量会由于热和量子波动而超出扩展范围。当一个电极的电化学势与随后两个电极的平均值匹配时,PT共振在单电子传输(SET)机制中显示为非线性电导导数d(2)I / dV(2)的峰值。充电附加能量。对于单能级量子点(安德森模型),我们找到了解析峰的形状以及对温度,磁场和结不对称性的依赖性,并与相同数量级的非弹性共隧道峰进行了比较。在实验传输光谱学中,仅根据其位置的电压依赖性判断,PT共振可能被误认为是弱SET共振。我们的结果提供了避免此类错误解释的基本线索。

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