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Intrinsic exciton dynamics from single air-suspended semiconducting single-walled carbon nanotubes.

机译:单个空气悬浮半导体单壁碳纳米管的内在激子动力学。

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摘要

Semiconducting single-walled carbon nanotubes (S-SWCNTs) have direct band gaps with a range of 0.5 to 2 eV depending on the SWCNT chirality. The photoluminescence (PL) quantum efficiency and the carriers' radiative lifetime have been previously studied but neither of them have been confirmed due to the large variation resulting from ensemble averaging, environmental effects, SWCNT defects, and SWCNT bundles. For example, quantum efficiency was estimated to be 0.01% to 7% and radiative lifetime was estimated or calculated to be 10 to 100 ns. In this thesis, we study absorption cross section, PL quantum efficiency and exciton relaxation dynamics from single air-suspended S-SWCNTs and extract "intrinsic" S-SWCNT properties.;The photo-excited carriers are electron-hole pairs (called excitons) in a SWCNT due to the strong Coulomb interactions in the nm-scale system. We selected relatively bright and less defected S-SWCNTs on our samples for investigation. For each S-SWCNT, the tube length, orientation, absorption and emission spectra were recorded. Experimentally, we observed that PL from a single S-SWCNT increases linearly at low excitation intensity (linear regime) and saturates at higher intensity (saturation regime). We also studied the exciton relaxation dynamics on each S-SWCNT by femtosecond excitation correlation (FEC) spectroscopy and resolved two relaxation time constants which were independent of the excitation intensity. We compare the simulation results based on a stochastic model to the experimental data and extract essential parameters including S-SWCNT unitless absorption coefficient (typically 0.02 to 0.06), PL quantum efficiency (typically 7 to 20%) and exciton relaxation time constants. We observed very fast nonlinear exciton-exciton annihilation rate (> (2 ps)-1) in a typical 5 mum-long S-SWCNTs. The exciton dynamics were consistent from 4 different S-SWCNTs in the saturation regime and the average total exciton number per pulse per tube in this saturation regime ranges from 2 to 12.;Compared to past work, the results (PL saturation curves and FEC data) between S-SWCNTs are very consistent which supports our belief that we are studying "intrinsic properties". We found a higher absorption coefficient, and higher PL quantum efficiency of S-SWCNTs compared to previous work. We also observe very fast nonlinear exciton-exciton annihilation in a relatively longer S-SWCNT and at lower exciton numbers.
机译:半导体单壁碳纳米管(S-SWCNT)的直接带隙范围为0.5到2 eV,这取决于SWCNT的手性。先前已经研究了光致发光(PL)量子效率和载流子的辐射寿命,但由于整体平均,环境效应,SWCNT缺陷和SWCNT束引起的巨大变化,因此均未得到证实。例如,量子效率估计为0.01%至7%,辐射寿命估计为或计算为10至100 ns。在本文中,我们研究了单个空气悬浮S-SWCNT的吸收截面,PL量子效率和激子弛豫动力学,并提取了“本征” S-SWCNT特性。光激发载流子是电子-空穴对(称为激子)。由于纳米级系统中很强的库仑相互作用,SWCNT中的碳纳米管成为可能。我们在样本中选择了相对较亮且缺陷较少的S-SWCNT进行研究。对于每个S-SWCNT,记录了管的长度,取向,吸收和发射光谱。在实验上,我们观察到来自单个S-SWCNT的PL在低激发强度(线性状态)下线性增加,并在较高强度(饱和状态)下饱和。我们还通过飞秒激发相关(FEC)光谱研究了每个S-SWCNT的激子弛豫动力学,并解析了两个与激发强度无关的弛豫时间常数。我们将基于随机模型的仿真结果与实验数据进行比较,并提取必要参数,包括S-SWCNT无单位吸收系数(通常为0.02至0.06),PL量子效率(通常为7至20%)和激子弛豫时间常数。我们观察到在典型的5毫米长的S-SWCNT中,非常快的非线性激子-激子an灭率(>(2 ps)-1)。饱和状态下4种不同的S-SWCNT的激子动力学是一致的,在这种饱和状态下每个管的每个脉冲的平均总激子数在2到12之间;与过去的工作相比,结果(PL饱和曲线和FEC数据) )在S-SWCNT之间非常一致,这支持我们的信念,即我们正在研究“固有特性”。与以前的工作相比,我们发现S-SWCNT的吸收系数更高,PL量子效率更高。我们还在相对较长的S-SWCNT和较低的激子数下观察到非常快的非线性激子-激子an灭。

著录项

  • 作者

    Xiao, Yee-Fang.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Physics Condensed Matter.
  • 学位 M.Sc.
  • 年度 2009
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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