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Exciton diffusion, end quenching, and exciton-exciton annihilation in individual air-suspended carbon nanotubes

机译:单个空气悬浮碳纳米管中的激子扩散,末端猝灭和激子激子an灭

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摘要

Luminescence properties of carbon nanotubes are strongly affected by exciton diffusion, which plays an important role in various nonradiative decay processes. Here we perform photoluminescence microscopy on hundreds of individual air-suspended carbon nanotubes to elucidate the interplay between exciton diffusion, end quenching, and exciton-exciton annihilation processes. A model derived from random-walk theory as well as Monte Carlo simulations are utilized to analyze nanotube length dependence and excitation power dependence of emission intensity. We have obtained the values of exciton diffusion length and absorption cross section for different chiralities, and diameter-dependent photoluminescence quantum yields have been observed. The simulations have also revealed the nature of a one-dimensional coalescence process, and an analytical expression for the power dependence of emission intensity is given.
机译:碳纳米管的发光特性受到激子扩散的强烈影响,激子扩散在各种非辐射衰变过程中起着重要作用。在这里,我们对数百个空气悬浮的碳纳米管进行光致发光显微镜检查,以阐明激子扩散,末端猝灭和激子-激子an灭过程之间的相互作用。利用从随机游走理论以及蒙特卡洛模拟得出的模型来分析纳米管的长度依赖性和发射强度的激发功率依赖性。我们获得了不同手性的激子扩散长度和吸收截面的值,并且观察到了直径依赖性的光致发光量子产率。模拟还揭示了一维合并过程的性质,并给出了发射强度与功率相关的解析表达式。

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