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A tunnelling spectroscopy study on the single-particle energy levels and electron-electron interactions in CdSe quantum dots

机译:隧道光谱研究CdSe量子点中的单粒子能级和电子-电子相互作用

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We performed scanning tunnelling spectroscopy on insulating colloidal CdSe quantum dots attached to gold with a rigid self-assembled monolayer. By varying the tip-dot distance we change the relative rate of tunnelling into versus tunnelling out of the dot over a wide range. If the tip is retracted relatively far from the dot, tunnelling in is much slower than tunnelling out of the dot; electrons tunnel one at a time through the dot. The resonances in the conductance spectrum correspond to the single-particle energy levels of the CdSe quantum dot. When the tip is brought closer to the dot, tunnelling in can become as fast as tunnelling out of the dot. Up to three electrons can be present in the particle; the electron-electron Coulomb interactions lead to a more complex conductance spectrum.
机译:我们对附着在金上的具有刚性自组装单层的绝缘胶体CdSe量子点进行了扫描隧道光谱。通过改变尖端点的距离,我们可以在较大范围内改变进入点与离开点的相对速率。如果尖端从点缩回相对较远,则进入隧道的速度要比离开点隧道的速度慢得多。电子每次通过一个点隧穿一个。电导谱中的共振对应于CdSe量子点的单粒子能级。当笔尖靠近点时,进入通道的速度可以与从点出来的速度一样快。粒子中最多可以存在三个电子。电子-电子库仑相互作用导致更复杂的电导谱。

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