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Optical Curtain Effect: Extraordinary Optical Transmission Enhanced by Antireflection

机译:光学幕布效果:增透增透性

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摘要

In this paper, we employ an antireflective coating which comprises inverted π-shaped metallic grooves to manipulate the behaviour of a transverse-magnetic (TM)-polarised plane wave transmitted through a periodic nanoslit array. At normal incidence, such scheme cannot only retain the optical curtain effect in the output region but also generate the extraordinary transmission of light through the nanoslits with the total transmission efficiency as high as 90 %. Besides, we show that the spatially invariant field distribution in the output region as well as the field distribution of resonant modes around the inverted π-shaped grooves can be reproduced immaculately when the system is excited by an array of point sources beneath the inverted π-shaped grooves. Furthermore, we investigate the influence of centre groove and side-corners of the inverted π-shaped grooves on suppressing the reflection of light, respectively. Based on our work, it shows promising potential in applications of enhancing the extraction efficiency as well as controlling the beaming pattern of light emitting diodes.
机译:在本文中,我们采用了一种抗反射涂层,该涂层包括倒置的π形金属凹槽,以控制通过周期性纳米缝隙阵列传输的横向(TM)极化平面波的行为。在垂直入射时,这种方案不仅可以在输出区域中保持光幕效果,还可以通过纳米狭缝产生非凡的光透射,总透射效率高达90%。此外,我们表明,当系统由反向π-下方的点源阵列激发时,可以完美地再现输出区域中空间不变的场分布以及反向π形凹槽周围的共振模的场分布。形的凹槽。此外,我们分别研究了反型π形凹槽的中心凹槽和侧角对抑制光反射的影响。根据我们的工作,它在提高提取效率以及控制发光二极管的光束方向图方面显示出广阔的应用前景。

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