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Exact comprehensive equations for the photon management properties of silicon nanowire

机译:硅纳米线光子管理特性的精确综合方程

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摘要

Unique photon management (PM) properties of silicon nanowire (SiNW) make it an attractive building block for a host of nanowire photonic devices including photodetectors, chemical and gas sensors, waveguides, optical switches, solar cells, and lasers. However, the lack of efficient equations for the quantitative estimation of the SiNW’s PM properties limits the rational design of such devices. Herein, we establish comprehensive equations to evaluate several important performance features for the PM properties of SiNW, based on theoretical simulations. Firstly, the relationships between the resonant wavelengths (RW), where SiNW can harvest light most effectively, and the size of SiNW are formulized. Then, equations for the light-harvesting efficiency at RW, which determines the single-frequency performance limit of SiNW-based photonic devices, are established. Finally, equations for the light-harvesting efficiency of SiNW in full-spectrum, which are of great significance in photovoltaics, are established. Furthermore, using these equations, we have derived four extra formulas to estimate the optimal size of SiNW in light-harvesting. These equations can reproduce majority of the reported experimental and theoretical results with only ~5% error deviations. Our study fills up a gap in quantitatively predicting the SiNW’s PM properties, which will contribute significantly to its practical applications.
机译:硅纳米线(SiNW)的独特光子管理(PM)特性使其成为许多纳米线光子器件(包括光电探测器,化学和气体传感器,波导,光开关,太阳能电池和激光器)的有吸引力的构建基块。但是,缺乏有效的方程式来定量估算SiNW的PM性能,限制了此类设备的合理设计。在本文中,我们基于理论模拟建立了综合方程,以评估SiNW粉末冶金性能的几个重要性能特征。首先,确定了谐振波长(RW)与SiNW的尺寸之间的关系,其中,SiNW可以最有效地收集光。然后,建立了RW处的光收集效率方程,该方程确定了基于SiNW的光子器件的单频性能极限。最后,建立了SiNW在全光谱中的集光效率方程,该方程在光伏中具有重要意义。此外,使用这些方程式,我们导出了四个额外的公式来估算光捕获中SiNW的最佳尺寸。这些方程式可以重现报告的大多数实验和理论结果,误差偏差仅为5%。我们的研究填补了在定量预测SiNW的PM性能方面的空白,这将大大有助于其实际应用。

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