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Quantum transport through an array of quantum dots

机译:通过一系列量子点传输量子

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摘要

The transient current through an array of as many as 1000 quantum dots is simulated with two newly developed quantum mechanical methods. To our surprise, upon switching on the bias voltage, the current increases linearly with time before reaching its steady state value. And the time required for the current to reach its steady state value is proportional to the length of the array, and more interestingly, is exactly the time for a conducting electron to travel through the array at the Fermi velocity. These quantum phenomena can be understood by a simple analysis on the energetics of an equivalent classical circuit. An experimental design is proposed to confirm the numerical findings.
机译:通过两种新开发的量子机械方法模拟了通过多达1000个量子点的瞬态电流。 令我们惊讶的是,在打开偏置电压后,电流在达到稳态值之前随时间线性增加。 电流达到其稳态值所需的时间与阵列的长度成正比,更有趣的是,这正是导电电子以Fermi速度穿过阵列的时间。 这些量子现象可以通过对等效古典电路的能量学的简单分析来理解。 提出了实验设计以确认数值发现。

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