首页> 外文期刊>Journal of physical chemistry letters >Origin of Two Larmor Frequencies in the Coherent Spin Dynamics of Colloidal CdSe Quantum Dots Revealed by Controlled Charging
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Origin of Two Larmor Frequencies in the Coherent Spin Dynamics of Colloidal CdSe Quantum Dots Revealed by Controlled Charging

机译:通过受控充电显示的胶体Cdse量子点的相干自旋动态中的两个大频频率的起源

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Coherent spin dynamics in colloidal CdSe quantum dots (QDs) typically show two spin components with different Larmor frequencies, whose origin is an open question. We exploit the photocharging approach to identify their origin and find that surface states play a key role in the appearance of the spin signals. By controlling the photocharging with electron or hole acceptors, we show that the specific spin component can be enhanced by the choice of acceptor type. In core/shell CdSe/ZnS QDs, the spin signals are significantly weaker. Our results exclude the neutral exciton as the spin origin and suggest that both Larmor frequencies are related to the coherent spin precession of electrons in photocharged QDs. The lower frequency is due to the electron confined in the middle of the QD, and the higher frequency to the electron additionally localized in the vicinity of the surface.
机译:胶体CDSE量子点(QDS)中的相干自旋动力学通常显示两个具有不同大频频率的两个旋转组件,其起源是一个打开的问题。 我们利用了光电要素方法来识别它们的起源,发现表面状态在旋转信号的外观中发挥关键作用。 通过用电子或孔受体控制光充电,我们表明可以通过选择受体类型来提高特定的自旋组分。 在核心/壳Cdse / ZnS QDS中,旋转信号显着弱。 我们的结果排除了中性激子作为旋转原点,并表明两个大频频率都与光电QD中的电子的相干旋转预流相关。 较低频率是由于QD中间限制的电子,以及较高的频率到附近的电子附近的电子。

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