首页> 外文期刊>Journal of physical chemistry letters >Nonuniform Excitonic Charge Distribution Enhances Exciton-Phonon Coupling in ZnSe/CdSe Alloyed Quantum Dots
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Nonuniform Excitonic Charge Distribution Enhances Exciton-Phonon Coupling in ZnSe/CdSe Alloyed Quantum Dots

机译:非均匀的激子电荷分布增强了ZnSe / Cdse合金量子点中的Exciton-Phonon耦合

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摘要

Zinc to cadmium cation exchange of ZnSe quantum dots has been used to produce a series of alloyed Zn1-xCdxSe quantum dots. As x increases and the lowest energy exciton shifts to the red, the peak initially broadens and then sharpens as x approaches 1. Resonance Raman spectra obtained with excitation near the lowest excitonic absorption peak show a gradual shift of the longitudinal optical phonon peak from 251 cm(-1) in pure ZnSe to 210 cm(-1) in nearly pure CdSe with strong broadening at intermediate compositions. The LO overtone to fundamental intensity ratio, a rough gauge of exciton-phonon coupling strength, increases considerably for intermediate compositions compared with those of either pure ZnSe or pure CdSe. The results indicate that partial localization of the hole in locally Cd-rich regions of the alloyed particles increases the strengths of local internal electric fields, increasing the coupling between the exciton and polar optical phonons.
机译:锌到镉阳离子交换ZnSe量子点的交换,已用于生产一系列合金化Zn1-Xcdxse量子点。 随着x的增加和最低能量激子转移到红色,峰值最初拓宽,然后锐化为x接近1.在最低激发器吸收峰值附近的激发中获得的共振拉曼光谱显示纵向光学声子峰值的逐渐从251厘米的逐渐移位 (-1)在纯锌中至210厘米(-1),在几乎纯的CDSE中,中间组合物强化强化。 与纯锌或纯CDSE的那些相比,LO泛孔到基本强度比,激发器 - 声子耦合强度的粗糙度计增加了中间组合物。 结果表明,合金颗粒的局部CD的区域中孔的部分定位增加了局部内部电场的强度,增加了激子和极光学声音之间的耦合。

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