Simovski Constantin, Morits Dmitry, Voroshilov Pavel, Guzhva Michael, Belov Pavel, Kivshar Yuri
Opt Express. 2013 Jul 1;21 Suppl 4:A714-25. doi: 10.1364/OE.21.00A714.
We suggest a new type of efficient light-trapping structures for thin-film solar cells based on arrays of planar nanoantennas operating far from their plasmon resonances. The operation principle of our structures relies on the excitation of collective modes of the nanoantenna arrays whose electric field is localized between the adjacent metal elements. We calculate a substantial enhancement of the short-circuit photocurrent for photovoltaic layers as thin as 100-150 nm. We compare our light-trapping structures with conventional anti-reflecting coatings and demonstrate that our design approach is more efficient. We show that it may provide a general background for different types of broadband light-trapping structures compatible with large-area fabrication technologies for thin-film solar cells.
我们提出了一种新型的高效光捕获结构,用于基于平面纳米天线阵列的薄膜太阳能电池,这些纳米天线在远离其等离子体共振的情况下工作。我们结构的工作原理依赖于纳米天线阵列集体模式的激发,其电场局域在相邻金属元件之间。我们计算得出,对于仅100 - 150纳米厚的光伏层,短路光电流有显著增强。我们将我们的光捕获结构与传统抗反射涂层进行了比较,并证明我们的设计方法更有效。我们表明,它可为与薄膜太阳能电池大面积制造技术兼容的不同类型宽带光捕获结构提供一个通用背景。