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Exciton dynamics in (6,5) single-walled carbon nanotubes studied with sub-20 fs pump-probe spectroscopy

机译:用子20 FS泵探针光谱学研究(6,5)单壁碳纳米管的激子动力学

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Using femtosecond pump probe spectroscopy with sub-20 fs resolution, we probe fundamental properties of the En exciton in (6,5) single walled carbon nanotubes, prepared by density gradient ultracentrifugation. From the initial photobleaching (PB) signal, measured faster than any relaxation process, we obtain the one- dimensional electron-hole correlation length ("exciton size") of the excitonic wavefunction along the nanotube. Anisotropy measurements in highly purified samples show that there is virtually no depolarisation of the E11 bleach over 40 ps. A photoinduced absorption (PA) band, blueshifted against the E11 bleach, shows only weak anisotropy. We find that exciton decay is pump-intensity dependent only at elevated pump intensities. Our high time resolution allows us to demonstrate that exciton motion is diffusive. We find a very short exciton diffusion length of below 10 nm. In consequence, many excitons can co-exist on a single nanotube without annihilation, which is an important aspect for applications in high-intensity environments (Lasing, switching etc.). We discuss the role of traps in exciton relaxation anisotropy.
机译:利用小型飞秒泵探针光谱法具有Sub-20 FS分辨率,通过密度梯度超速离心制备的(6,5)单壁碳纳米管中的EN激子的基本性质探测ZH激素的基本性质。从初始光漂白(PB)信号,比任何松弛过程更快地测量,我们获得沿纳米管的激发器波功能的一维电子 - 空穴相关长度(“激子尺寸”)。高度纯化的样品中的各向异性测量表明,在40 ps中几乎没有e 11 漂白剂的脱极化。对E 11 漂白剂的光抑制(PA)带,仅显示弱各向异性。我们发现激子衰减仅泵浦强度依赖于升高的泵强度。我们的高度分辨率使我们能够证明激子运动是扩散的。我们发现一个非常短的激子扩散长度低于10nm。因此,许多激子可以在单个纳米管上共存而不湮灭,这是高强度环境中应用(激光,切换等)的重要方面。我们讨论了陷阱在激子放松各向异性的作用。

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