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Wavelength-dependent absorption in structurally tailored randomly branched vertical arrays of InSb nanowires

机译:InSb纳米线结构定制的随机分支垂直阵列中与波长相关的吸收

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摘要

Arrays of semiconductor nanowires are of potential interest for applications including photovoltaic devices and IR detectors/imagers. While nominally uniform arrays have typically been studied, arrays containing nanowires with multiple diameters and/or random distributions of diameters could allow tailoring of the photonic properties of the arrays. In this Letter, we demonstrate the growth and optical properties of randomly branched InSb nanowire arrays. The structure mentioned can be approximated as three vertically stacked regions, with average diameters of 20, 100, and 150 nm within the respective layers. Reflectance and transmittance measurements on structures with different average nanowire lengths have been performed over the wavelength range of 300-2000 nm, and absorbance has been calculated from these measurements. The structures show low reflectance over the visible and IR regions and wavelength-dependent absorbance in the IR region. A model considering the diameter-dependent photonic coupling (at a given wavelength) and random distribution of nanowire diameters within the regions has been developed. The diameter-dependent photonic coupling results in a roll-off in the absorbance spectra at wavelengths well below the bulk cutoff of ~7 μm, and randomness is observed to broaden the absorbance response. Varying the average diameters would allow tailoring of the wavelength dependent absorption within various layers, which could be employed in photovoltaic devices or wavelength-dependent IR imagers.
机译:半导体纳米线的阵列对于包括光伏器件和IR检测器/成像器的应用具有潜在的兴趣。尽管通常已经研究了名义上均匀的阵列,但是包含具有多个直径和/或直径的随机分布的纳米线的阵列可以允许定制阵列的光子特性。在这封信中,我们证明了随机分支的InSb纳米线阵列的生长和光学性质。可以将所述结构近似为三个垂直堆叠的区域,在各个层中的平均直径为20、100和150 nm。已经在300-2000 nm的波长范围内对具有不同平均纳米线长度的结构进行了反射率和透射率测量,并根据这些测量值计算出吸光度。该结构在可见光和IR区域显示出低反射率,在IR区域显示出与波长有关的吸收率。已经开发了考虑直径依赖的光子耦合(在给定波长下)和区域内纳米线直径的随机分布的模型。依赖于直径的光子耦合导致远低于约7μm的整体截止波长处的吸收光谱下降,并且观察到随机性会扩大吸收响应。改变平均直径将允许在各个层内定制与波长有关的吸收,这可以用于光伏装置或与波长有关的IR成像器中。

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