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Engineering the spin-flip limited exciton dephasing in colloidal CdSe/CdS quantum dots

机译:在胶体CdSe / CdS量子点中设计自旋翻转受限激子相移

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Figure Persented: We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quantum dots in the temperature range from 5 to 170 K using a sensitive three-beam photon echo technique in heterodyne detection, which is not affected by spectral diffusion. Pure dephasing via acoustic phonons dominates the initial dynamics, followed by an exponential zero-phonon line dephasing. From the temperature dependence of the zero-phonon line dephasing, the exciton lifetime, and the exciton thermalization within its fine structure, we show that the zero-phonon line dephasing of the lowest bright state originates from the phonon-assisted spin-flip to dark exciton states. Importantly, we can control the dephasing by tailoring the exciton fine structure through its dependence on the dot core size and shell thickness, as expected from the spin-flip mechanism. By reducing the electron-hole exchange interaction with increasing core size and delocalization of the electron wave function in the quasi-type-II core/shell band alignment, we find the longest zero-phonon line dephasing time of ~110 ps at 5 K in dots with the largest core diameter (5.7 nm) and the thickest CdSe shell (9 monolayers) in the series studied.
机译:上图的观点:我们已经使用敏感的三束光子回波技术在外差检测中测量了温度范围为5至170 K的高质量锌共混物CdSe / CdS胶体量子点的固有激子相移,该方法不受光谱的影响扩散。通过声子的纯相移控制了初始动态,然后是指数零声子线相移。从零声子线移相的温度依赖性,激子寿命以及其精细结构中的激子热化,我们表明最低亮态的零声子线移相源自声子辅助的自旋翻转到暗态激子态。重要的是,正如自旋翻转机制所期望的那样,我们可以通过调整激子精细结构来控制移相,该结构取决于点芯尺寸和壳厚度。通过在准II型核/壳带对准中通过增加核尺寸和电子波函数的离域来减少电子-空穴交换相互作用,我们发现在5 K时,最长的零声子线相移时间为〜110 ps。在所研究的系列中,具有最大核直径(5.7 nm)和最厚CdSe壳(9个单层)的点

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