论文标题

碳纳米管中暗三重激子激子上量子限制的发生率

Incidence of Quantum Confinement on Dark Triplet Excitons in Carbon Nanotubes

论文作者

Palotas, J., Negyedi, M., Kollarics, S., Bojtor, A., Rohringer, P., Pichler, Th., Simon, F.

论文摘要

单壁碳纳米管(SWCNT)的光物理因其在光收集和光电子中的潜在应用而进行了深入研究。 SWCNT的激发状态形成强烈结合的电子孔对,激发态,其中只有单重激子参与应用相关的光学转换。长寿的旋转三曲线指出的是应用程序的应用,但它们成为量子信息存储的候选者。因此,非常需要对三胞胎激子能量结构的了解,尤其是在SWCNT手性方面的知识。我们报告了使用专用光谱仪的几种SWCNT手势观察到三胞胎状态重组(即磷光)对光发射的观察。这将产生单重毛间隙作为SWCNT直径的函数,并遵循基于量子限制效应的预测。在高微波功率下(最多10 W)辐射下的饱和度可以确定三重态的自旋 - 递延时间。我们的研究敏感地区分了最低的光学活性状态是在同一纳米管上的激发态还是通过邻近纳米管的FörsterCricton能量转移。

Photophysics of single-wall carbon nanotubes (SWCNTs) is intensively studied due to their potential application in light harvesting and optoelectronics. Excited states of SWCNTs form strongly bound electron-hole pairs, excitons, of which only singlet excitons participate in application relevant optical transitions. Long-living spin-triplet states hinder applications but they emerge as candidates for quantum information storage. Therefore knowledge of the triplet exciton energy structure, in particular in a SWCNT chirality dependent manner, is greatly desired. We report the observation of light emission from triplet state recombination, i.e. phosphorescence, for several SWCNT chiralities using a purpose-built spectrometer. This yields the singlet-triplet gap as a function of SWCNT diameter and it follows predictions based on quantum confinement effects. Saturation under high microwave power (up to 10 W) irradiation allows to determine the spin-relaxation time for triplet states. Our study sensitively discriminates whether the lowest optically active state is populated from an excited state on the same nanotube or through Förster exciton energy transfer from a neighboring nanotube.

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