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Long-wavelength, confined optical phonons in InAs nanowires probed by Raman spectroscopy

机译:拉曼光谱法探测InAs纳米线中的长波长受限光学声子

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Strongly confined nano-systems, such as one-dimensional nanowires, feature deviations in their structural, electronic and optical properties from the corresponding bulk. In this work, we investigate the behavior of long-wavelength, optical phonons in vertical arrays of InAs nanowires by Raman spectroscopy. We attribute the main changes in the spectral features to thermal anharmonicity, due to temperature effects, and rule out the contribution of quantum confinement and Fano resonances. We also observe the appearance of surface optical modes, whose details allow for a quantitative, independent estimation of the nanowire diameter. The results shed light onto the mechanisms of lineshape change in low-dimensional InAs nanostructures, and are useful to help tailoring their electronic and vibrational properties for novel functionalities.
机译:严格限制的纳米系统(例如一维纳米线)在结构,电子和光学特性方面与相应的体积存在偏差。在这项工作中,我们通过拉曼光谱研究InAs纳米线的垂直阵列中的长波长光子的行为。由于温度效应,我们将光谱特征的主要变化归因于热非谐性,并排除了量子限制和Fano共振的影响。我们还观察到了表面光学模式的出现,其细节允许对纳米线直径进行定量,独立的估计。该结果揭示了低维InAs纳米结构中线形变化的机制,对于帮助定制其电子和振动特性以实现新颖的功能非常有用。

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