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Photo-acoustic spectroscopy revealing resonant absorption of self-assembled GaAs-based nanowires

机译:光声光谱揭示了自组装GaAs基纳米线的共振吸收

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摘要

III–V semiconductors nanowires (NW) have recently attracted a significant interest for their potential application in the development of high efficiency, highly-integrated photonic devices and in particular for the possibility to integrate direct bandgap materials with silicon-based devices. Here we report the absorbance properties of GaAs-AlGaAs-GaAs core-shell-supershell NWs using photo-acoustic spectroscopy (PAS) measurements in the spectral range from 300 nm to 1100 nm wavelengths. The NWs were fabricated by self-catalyzed growth on Si substrates and their dimensions (length ~5 μm, diameter ~140–150 nm) allow for the coupling of the incident light to the guided modes in near-infrared (IR) part of the spectrum. This coupling results in resonant absorption peaks in the visible and near IR clearly evidenced by PAS. The analysis reveal broadening of the resonant absorption peaks arising from the NW size distribution and the interaction with other NWs. The results show that the PAS technique, directly providing scattering independent absorption spectra, is a very useful tool for the characterization and investigation of vertical NWs as well as for the design of NW ensembles for photonic applications, such as Si-integrated light sources, solar cells, and wavelength dependent photodetectors.
机译:III–V半导体纳米线(NW)最近因其在开发高效,高度集成的光子器件中的潜在应用,特别是将直接带隙材料与基于硅的器件集成的可能性而引起了人们的极大兴趣。在这里,我们使用光声光谱(PAS)测量在300 nm至1100 nm波长范围内的光谱报告了GaAs-AlGaAs-GaAs核-壳-超壳NW的吸收特性。 NW是通过在Si衬底上进行自催化生长而制造的,其尺寸(长约5μm,直径约140-150μnm)可以将入射光耦合到硅的近红外(IR)部分的导模中。光谱。这种耦合会在可见光和近红外中产生共振吸收峰,由PAS清楚地证明。分析显示,由于NW尺寸分布以及与其他NW的相互作用而引起的共振吸收峰变宽。结果表明,直接提供与散射无关的吸收光谱的PAS技术对于表征和研究垂直NW以及用于光子应用(例如Si集成光源,太阳能,单元和依赖于波长的光电探测器。

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