Song Kyung-Deok, Kempa Thomas J, Park Hong-Gyu, Kim Sun-Kyung
Opt Express. 2014 May 5;22 Suppl 3:A992-A1000. doi: 10.1364/OE.22.00A992.
We studied optical resonances in laterally oriented Si nanowire arrays by conducting finite-difference time-domain simulations. Localized Fabry-Perot and whispering-gallery modes are supported within the cross section of each nanowire in the array and result in broadband light absorption. Comparison of a nanowire array with a single nanowire shows that the current density (J(SC)) is preserved for a range of nanowire morphologies. The J(SC) of a nanowire array depends on the spacing of its constituent nanowires, which indicates that both diffraction and optical antenna effects contribute to light absorption. Furthermore, a vertically stacked nanowire array exhibits significantly enhanced light absorption because of the emergence of coupled cavity-waveguide modes and the mitigation of a screening effect. With the assumption of unity internal quantum efficiency, the J(SC) of an 800-nm-thick cross-stacked nanowire array is 14.0 mA/cm², which yields a ~60% enhancement compared with an equivalent bulk film absorber. These numerical results underpin a rational design strategy for ultrathin solar absorbers based on assembled nanowire cavities.
我们通过进行时域有限差分模拟,研究了横向取向的硅纳米线阵列中的光学共振。在阵列中每根纳米线的横截面上都支持局域法布里-珀罗模式和回音壁模式,并导致宽带光吸收。将纳米线阵列与单根纳米线进行比较表明,对于一系列纳米线形态,电流密度(J(SC))得以保留。纳米线阵列的J(SC)取决于其组成纳米线的间距,这表明衍射和光学天线效应都对光吸收有贡献。此外,由于耦合腔-波导模式的出现以及屏蔽效应的减轻,垂直堆叠的纳米线阵列表现出显著增强的光吸收。假设内部量子效率为1,800纳米厚的交叉堆叠纳米线阵列的J(SC)为14.0 mA/cm²,与等效的体膜吸收器相比,提高了约60%。这些数值结果为基于组装纳米线腔的超薄太阳能吸收器的合理设计策略提供了支撑。