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直接测量单个半导体单壁碳纳米管的绝对吸收光谱。

Direct measurement of the absolute absorption spectrum of individual semiconducting single-wall carbon nanotubes.

机构信息

Institut Lumière Matière, UMR5306 Université Lyon 1-CNRS, Université de Lyon, F-69622 Villeurbanne, France.

出版信息

Nat Commun. 2013;4:2542. doi: 10.1038/ncomms3542.

Abstract

The optical properties of single-wall carbon nanotubes are very promising for developing novel opto-electronic components and sensors with applications in many fields. Despite numerous studies performed using photoluminescence or Raman and Rayleigh scattering, knowledge of their optical response is still partial. Here we determine using spatial modulation spectroscopy, over a broad optical spectral range, the spectrum and amplitude of the absorption cross-section of individual semiconducting single-wall carbon nanotubes. These quantitative measurements permit determination of the oscillator strength of the different excitonic resonances and their dependencies on the excitonic transition and type of semiconducting nanotube. A non-resonant background is also identified and its cross-section comparable to the ideal graphene optical absorbance. Furthermore, investigation of the same single-wall nanotube either free standing or lying on a substrate shows large broadening of the excitonic resonances with increase of oscillator strength, as well as stark weakening of polarization-dependent antenna effects, due to nanotube-substrate interaction.

摘要

单壁碳纳米管的光学性质非常有前途,可以开发新型光电元件和传感器,应用于许多领域。尽管已经进行了许多使用光致发光或拉曼和瑞利散射的研究,但对其光学响应的了解仍然不全面。在这里,我们使用空间调制光谱法,在很宽的光学光谱范围内,确定了单个半导体单壁碳纳米管的吸收截面的光谱和幅度。这些定量测量允许确定不同激子共振的振子强度及其对激子跃迁和半导体类型的依赖性。还确定了非共振背景及其截面与理想石墨烯光吸收率相当。此外,对无论是自由站立还是放在衬底上的同一单壁纳米管进行的研究表明,随着振子强度的增加,激子共振的展宽很大,并且由于纳米管-衬底相互作用,偏振相关天线效应明显减弱。

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