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红外光谱范围内外延石墨烯的时间分辨光谱学:弛豫动力学和饱和行为。

Time-resolved spectroscopy on epitaxial graphene in the infrared spectral range: relaxation dynamics and saturation behavior.

机构信息

Helmholtz-Zentrum Dresden-Rossendorf, PO Box 510119, D-01314 Dresden, Germany.

出版信息

J Phys Condens Matter. 2013 Feb 6;25(5):054202. doi: 10.1088/0953-8984/25/5/054202.

Abstract

We present the results of pump–probe experiments on multilayer graphene samples performed in a wide spectral range, namely from the near infrared (photon energy 1.5 eV) to the terahertz (photon energy 8 meV) spectral range. In the near infrared, exciting carriers and probing at higher photon energies provides direct evidence for a hot carrier distribution. Furthermore, spectroscopic signatures of the highly doped graphene layers at the interface to SiC are observed in the near-infrared range. In the mid-infrared range, the various relaxation mechanisms, in particular scattering via optical phonons and Auger-type processes, are identified by comparing the experimental results to microscopic modeling. Changes from induced transmission to induced absorption are attributed to probing above or below the Fermi edge of the graphene layers. This effect occurs for certain photon energies in the near-infrared range, where it is related to highly doped graphene layers at the interface to SiC, and in the far-infrared range for the quasi-intrinsic graphene layers. In addition to the relaxation dynamics, the saturation of pump-induced bleaching of graphene is studied. Here a quadratic dependence of the saturation fluence on the pump photon energy in the infrared spectral range is revealed.

摘要

我们展示了在宽光谱范围内(从近红外(光子能量 1.5 eV)到太赫兹(光子能量 8 meV))对多层石墨烯样品进行的泵浦-探测实验结果。在近红外,激发载流子并在更高的光子能量处探测提供了热载流子分布的直接证据。此外,在近红外范围内观察到了与 SiC 界面处高度掺杂的石墨烯层的光谱特征。在中红外范围内,通过将实验结果与微观模型进行比较,确定了各种弛豫机制,特别是通过光学声子和俄歇型过程的散射。从感应透射到感应吸收的变化归因于在石墨烯层的费米边缘上方或下方探测。这种效应在近红外范围内的某些光子能量下发生,与 SiC 界面处高度掺杂的石墨烯层有关,而在远红外范围内与准本征石墨烯层有关。除了弛豫动力学之外,还研究了泵浦诱导石墨烯漂白的饱和。这里揭示了在红外光谱范围内,饱和光强与泵浦光子能量的二次依赖关系。

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