Sturmberg Björn C P, Dossou Kokou B, Botten Lindsay C, Asatryan Ara A, Poulton Christopher G, McPhedran Ross C, de Sterke C Martijn
Opt Express. 2013 Nov 4;21 Suppl 6:A964-9. doi: 10.1364/OE.21.00A964.
Aperiodic Nanowire (NW) arrays have higher absorption than equivalent periodic arrays, making them of interest for photovoltaic applications. An inevitable property of aperiodic arrays is the clustering of some NWs into closer proximity than in the equivalent periodic array. We focus on the modes of such clusters and show that the reduced symmetry associated with cluster formation allows external coupling into modes which are dark in periodic arrays, thus increasing absorption. To exploit such modes fully, arrays must include tightly clustered NWs that are unlikely to arise from fabrication variations but must be created intentionally.
非周期性纳米线(NW)阵列比等效的周期性阵列具有更高的吸收率,这使其在光伏应用中具有吸引力。非周期性阵列的一个不可避免的特性是,一些纳米线会比等效周期性阵列中聚集得更近。我们关注此类簇的模式,并表明与簇形成相关的对称性降低允许外部耦合到周期性阵列中为暗模式的模式,从而增加吸收率。为了充分利用此类模式,阵列必须包括紧密聚集的纳米线,这些纳米线不太可能因制造变化而产生,而必须有意创建。