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Ultrafast exciton dynamics in semiconducting single-walled carbon nanotubes

机译:半导体单壁碳纳米管中的超快激子动力学

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To define the origin of the electronic excited states of single-walled carbon nanotubes, femtosecond fluorescence up-conversion and frequency-resolved transient absorption measurements were used for selective excitation/probing of particular nanotubes in a micelle-dispersed preparation enriched with individual nanotubes. Analysis of the temporal and intensity profiles of the transient signals enable one to unambiguously identify the excitonic nature of elementary excitations in semiconducting nanotubes, and the predominant dynamical process as a remarkable manifestation of exciton-exciton annihilation. These studies convincingly support the conclusion that the longest wavelength electronic excitations are of excitonic origin. In addition, evidence is shown for bi-exciton formation in single walled nanotubes.
机译:为了定义单壁碳纳米管的电子激发态的起源,飞秒荧光上转换和频率分辨的瞬态吸收测量用于选择性激发/探测富含单个纳米管的胶束分散制剂中的特定纳米管。对瞬态信号的时间和强度分布图的分析使人们能够明确地识别半导体纳米管中基本激发的激子性质,而主要的动力学过程是激子-激子an灭的显着表现。这些研究有说服力地支持了最长波长电子激发是激子起源的结论。另外,显示了单壁纳米管中双激子形成的证据。

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