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首页> 外文期刊>Journal of physical chemistry letters >13 nm Exciton Size in (6,5) Single-Wall Carbon Nanotubes
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13 nm Exciton Size in (6,5) Single-Wall Carbon Nanotubes

机译:(6,5)单壁碳纳米管中的13 nm激子大小

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摘要

Electron-hole correlation lengths, also termed exciton size, for (6,5) single-wall carbon nanotubes (SWNTs) are determined using femtosecond time-resolved pump-probe spectroscopy. The phase space filling model is used to obtain the sizes of the first subband exciton in samples of isolated and of bundled SWNTs. The experiments indicate that the exciton size of (13 +/- 3) nm is a factor of 6 higher than previous experimental estimates and theoretical predictions for vacuum suspended SWNTs. This surprising result may be attributed at least in part to the effect of the dielectric environment on exciton sizes and supports recent theoretical findings predicting that screening in SWNTs may enhance rather than reduce electron-hole interactions for separations larger than the tube diameter. Thereby, the work also points to the unique nature of screening and electronic correlations in one-dimensional semiconductors.
机译:(6,5)单壁碳纳米管(SWNT)的电子-空穴相关长度(也称为激子尺寸)是使用飞秒时间分辨泵浦光谱法确定的。相空间填充模型用于获得隔离的和捆绑的SWNT样本中的第一子带激子的大小。实验表明,(13 +/- 3)nm的激子尺寸比真空悬浮SWNTs的先前实验估计和理论预测高6倍。这一令人惊讶的结果可能至少部分归因于介电环境对激子尺寸的影响,并支持了最近的理论发现,即对于大于管直径的分离,SWNT中的筛选可能会增强而不是减少电子-空穴相互作用。因此,这项工作还指出了一维半导体中筛选和电子相关性的独特性质。

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