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Single-electron charge sensing in self-assembled quantum dots

机译:自组装量子点中的单电子电荷感测

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摘要

Measuring single-electron charge is one of the most fundamental quantum technologies. Charge sensing, which is an ingredient for the measurement of single spins or single photons, has been already developed for semiconductor gate-defined quantum dots, leading to intensive studies on the physics and the applications of single-electron charge, single-electron spin and photon–electron quantum interface. However, the technology has not yet been realized for self-assembled quantum dots despite their fascinating transport phenomena and outstanding optical functionalities. In this paper, we report charge sensing experiments in self-assembled quantum dots. We choose two adjacent dots, and fabricate source and drain electrodes on each dot, in which either dot works as a charge sensor for the other target dot. The sensor dot current significantly changes when the number of electrons in the target dot changes by one, demonstrating single-electron charge sensing. We have also demonstrated real-time detection of single-electron tunnelling events. This charge sensing technique will be an important step towards combining efficient electrical readout of single-electron with intriguing quantum transport physics or advanced optical and photonic technologies developed for self-assembled quantum dots.
机译:测量单电子电荷是最基本的量子技术之一。电荷感测是测量单自旋或单光子的一种成分,已经针对半导体门定义的量子点进行了开发,从而导致对单电子电荷,单电子自旋和光子-电子量子界面。然而,自组装量子点尽管具有引人入胜的传输现象和出色的光学功能,但尚未实现该技术。在本文中,我们报告了自组装量子点中的电荷感测实验。我们选择两个相邻的点,并在每个点上制造源电极和漏电极,其中一个点充当另一个目标点的电荷传感器。当目标点中的电子数改变1时,传感器点电流会发生显着变化,这说明了单电子电荷感测。我们还演示了单电子隧穿事件的实时检测。这种电荷感测技术将是将单电子的有效电读出与引人入胜的量子传输物理学或为自组装量子点开发的先进光学和光子技术相结合的重要一步。

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