论文标题

半导体纳米晶的光致发光光谱线形状的理论

Theory of photoluminescence spectral line shapes of semiconductor nanocrystals

论文作者

Lin, Kailai, Jasrasaria, Dipti, Yoo, Jason J., Bawendi, Moungi, Utzat, Hendrik, Rabani, Eran

论文摘要

半导体纳米晶体(NCS)的单分子光致发光(PL)光谱揭示了NCS中激子相互作用的性质。了解低温下的狭窄线形状,并且随着温度升高而显着拓宽仍然是一个开放的问题。在这里,我们开发了一个原子模型来描述NCS的PL谱,考虑激发效应,声子分散关系和激子 - Phonon耦合。我们在从t = 4到t = 290K的CDSE/CDS核心壳NC上使用单分子PL测量值来验证我们的模型,并发现低温下的略微空气对称的主峰狭窄的零孔子线(ZPL)和几个声音子侧带。此外,我们确定了产生光学声子边带的不同CDSE光学模式。随着温度的升高,光谱宽度对温度的依赖性更强,我们证明这与频移和混合模式相关,反映为高阶激子 - phonon耦合(Duschinsky旋转)。我们还对PL对核心尺寸和外壳厚度的依赖进行建模,并为在高温下的线宽狭窄的NC设计提供策略。

Single-molecule photoluminescence (PL) spectroscopy of semiconductor nanocrystals (NCs) reveals the nature of exciton-phonon interactions in NCs. Understanding the narrow line shapes at low temperatures and the significant broadening as temperature increases remains an open problem. Here, we develop an atomistic model to describe the PL spectrum of NCs, accounting for excitonic effects, phonon dispersion relations, and exciton-phonon couplings. We use single-molecule PL measurements on CdSe/CdS core-shell NCs from T=4 to T=290K to validate our model and find that the slightly-asymmetric main peak at low temperatures is comprised of a narrow zero-phonon line (ZPL) and several acoustic phonon sidebands. Furthermore, we identify the distinct CdSe optical modes that give rise to the optical phonon sidebands. As the temperature increases, the spectral width shows a stronger dependence on temperature, which we demonstrated to be correlated with frequency shifts and mode-mixing, reflected as higher-order exciton-phonon couplings (Duschinsky rotations). We also model the PL dependence on core size and shell thickness and provide strategies for the design of NCs with narrow linewidths at elevated temperatures.

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