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Letter. Omnidirectional absorption in nanostructured metal surfaces

机译:信件。纳米结构金属表面的全向吸收

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摘要

Light absorbers available at present provide far from optimal black-body performance. The need for more efficient absorbers is particularly acute on the microscale, where they can play a significant role in preventing crosstalk between optical interconnects, and also as thermal light-emitting sources. Several efforts have been made in this context to achieve near-total but directionally dependent absorption using periodic grating structures. However, the ability to absorb light completely for any incident direction of light remains a challenge. Here we show that total omnidirectional absorption of light can be achieved in nanostructured metal surfaces that sustain localized optical excitations. The effect is realized over a full range of incident angles and can be tuned throughout the visible and near-infrared regimes by scaling the nanostructure dimensions. We suggest that surfaces displaying omnidirectional absorption will play a key role in devising efficient photovoltaic cells in which the absorbed light leads to electron–hole pair production.
机译:当前可用的光吸收剂不能提供最佳的黑体性能。在微米尺度上,对更高效吸收体的需求尤为迫切,因为它们在防止光学互连之间以及作为热发光源的串扰方面可以发挥重要作用。在这种情况下,已经做出了一些努力,以使用周期性光栅结构来实现几乎全部但方向相关的吸收。然而,对于光的任何入射方向完全吸收光的能力仍然是一个挑战。在这里,我们表明,在维持局部光激发的纳米结构金属表面中,可以实现全方位的光全吸收。该效应可在整个入射角范围内实现,并且可以通过缩放纳米结构尺寸在整个可见光和近红外区域进行调节。我们建议显示全向吸收的表面将在设计高效的光伏电池中发挥关键作用,其中吸收的光导致电子-空穴对的产生。

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