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Probing electronic transitions in individual carbon nanotubes by Rayleigh scattering

机译:通过瑞利散射探测单个碳纳米管中的电子跃迁

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Rayleigh scattering spectra were obtained from individual single-waited carbon nanotubes with the use of a laser-generated visible and near-infrared supercontinuum. This diagnostic method is noninvasive and general for nanoscale objects. The approach permits clear identification of excited states in arbitrary metallic and semiconducting nanotubes. We analyzed spectral lineshapes in relation to the role of excitonic effects and correlated the results with Raman scattering data on individual tubes. The nanotube structure remained the same over distances of tens of micrometers. Small nanotube bundles retained distinct Rayleigh spectroscopic signatures of their component nanotubes, thus allowing the probing of nanotube-nanotube interactions.
机译:瑞利散射光谱是通过使用激光产生的可见光和近红外超连续谱从单个等待的碳纳米管获得的。该诊断方法是非侵入性的,并且对于纳米级对象是通用的。该方法可以清楚地识别任意金属和半导体纳米管中的激发态。我们分析了与激子效应的作用有关的谱线形状,并将结果与​​各个管子上的拉曼散射数据相关联。纳米管结构在几十微米的距离上保持不变。小纳米管束保留了其组成纳米管的独特瑞利光谱特征,因此可以探测纳米管与纳米管的相互作用。

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