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首页> 外文期刊>Nanoscale >Interplay of spectral diffusion and phonon-broadening in individual photo-emitters: the case of carbon nanotubes
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Interplay of spectral diffusion and phonon-broadening in individual photo-emitters: the case of carbon nanotubes

机译:相互作用的光谱扩散在个人photo-emitters phonon-broadening:碳纳米管的情况下

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At cryogenic temperatures, the photoluminescence (PL) spectrum of nano-emitters may still be significantly broadened due to interactions with the environment. The interplay of spectral diffusion (SD) and phonon broadening in this context is still a debated issue. Singlewall carbon nanotubes (SWNTs) are a particularly relevant system to address this topic as they show intense spectral diffusion and undergo a high exciton-phonon coupling due to their one-dimensional geometry. Here, we investigate the correlations between the spectral diffusion of the main line and that of the wings in SWNTs quantitatively and demonstrate that the photoluminescence spectrum undergoes spectral jumps as a whole, without distortions. This behavior suggests that the spectral shape of SWNT PL is defined by exciton-phonon interactions and that spectral diffusion results in an additional flat broadening. The methodology developed here can be used to investigate a broad range of non-Lorentzian emitters undergoing spectral diffusion.
机译:在低温下,光致发光光谱(PL) nano-emitters仍有可能由于相互作用显著扩大环境。扩散(SD)和声子扩大环境仍然是一个争论不休的问题。碳纳米管(纳米)是一种特殊相关系统来解决这一主题时显示强烈的光谱扩散和经历由于他们的高exciton-phonon耦合一维几何。光谱扩散之间的相关性主线和纳米管的翅膀定量和证明光致发光光谱进行光谱跳作为一个整体,没有扭曲。碳纳米管的行为表明,光谱形状PL是由exciton-phonon交互和定义的一个额外的光谱扩散的结果平的扩大。可用于广泛的调查non-Lorentzian发射器进行光谱扩散。

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