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Importance of the Electronic State on the Electrode in Electron Tunneling Processes between the Electrode and the Quantum Dot

机译:电极与量子点之间电子隧穿过程中电子态在电极上的重要性

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We have revealed that the electronic states in the electrodes give a significant influence to the electron transport in nano-electronic devices. We have theoretically investigated the time-evolution of electron transport from a two-dimensional electron gas (2DEG) to a quantum dot (QD), where 2DEG represents the electrode in the nano-electronic devices. We clearly showed that the coherent electron transport is remarkably modified depending on the initial electronic state in the 2DEG. The electron transport from the 2DEG to the QD is strongly enhanced, when the initial state of the electron in the 2DEG is localized below the QD. We have proposed that controlling the electronic state in the electrodes could realize a new concept device function without modifying the electrode structures; that achieves a new controllable state in future nano-electronic devices.
机译:我们已经揭示了电极中的电子状态对纳米电子设备中的电子传输产生了重大影响。我们从理论上研究了电子从二维电子气(2DEG)到量子点(QD)的时间演化,其中2DEG代表纳米电子设备中的电极。我们清楚地表明,取决于2DEG中的初始电子状态,相干电子传输会显着改变。当2DEG中电子的初始状态位于QD下方时,从2DEG到QD的电子传输会大大增强。我们已经提出,控制电极中的电子状态可以在不修改电极结构的情况下实现新的概念器件功能。在未来的纳米电子设备中实现了新的可控状态。

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