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Measurement of complex optical susceptibility for individual carbon nanotubes by elliptically polarized light excitation

机译:椭圆偏振光激发法测量单个碳纳米管的复光学磁化率

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摘要

The complex optical susceptibility is the most fundamental parameter characterizing light-matter interactions and determining optical applications in any material. In one-dimensional (1D) materials, all conventional techniques to measure the complex susceptibility become invalid. Here we report a methodology to measure the complex optical susceptibility of individual 1D materials by an elliptical-polarization-based optical homodyne detection. This method is based on the accurate manipulation of interference between incident left- (right-) handed elliptically polarized light and the scattering light, which results in the opposite (same) contribution of the real and imaginary susceptibility in two sets of spectra. We successfully demonstrate its application in determining complex susceptibility of individual chirality-defined carbon nanotubes in a broad optical spectral range (1.6–2.7 eV) and under different environments (suspended and in device). This full characterization of the complex optical responses should accelerate applications of various 1D nanomaterials in future photonic, optoelectronic, photovoltaic, and bio-imaging devices.
机译:复杂的光学敏感性是表征光与物质相互作用并确定任何材料的光学应用的最基本参数。在一维(1D)材料中,用于测量复杂磁化率的所有常规技术都将失效。在这里,我们报告一种方法,通过基于椭圆偏振的光学零差检测来测量单个一维材料的复杂光学磁化率。该方法基于对入射的左(右)椭圆偏振光和散射光之间干涉的精确控制,这导致两组光谱中的实磁率和虚磁率相反(相同)。我们成功地证明了其在确定单个手性定义的碳纳米管在宽光谱范围(1.6–2.7 eV)和不同环境(悬浮和在设备中)下的复杂磁化率的应用。复杂光学响应的​​完整表征将加速各种一维纳米材料在未来的光子,光电,光伏和生物成像设备中的应用。

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