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通过改变柔性超表面的图案尺寸、形状和深度来控制可见光范围内的透射和反射雾度。

Control of visible-range transmission and reflection haze by varying pattern size, shape and depth in flexible metasurfaces.

作者信息

Maity Avijit, Biswas Vaswati, Vijaya R

机构信息

Department of Physics, Indian Institute of Technology Kanpur, Kanpur, 208016, India.

Centre for Lasers and Photonics, Indian Institute of Technology Kanpur, Kanpur, 208016, India.

出版信息

Front Optoelectron. 2024 Jul 30;17(1):25. doi: 10.1007/s12200-024-00125-3.

Abstract

Cost-effective soft imprint lithography technique is used to prepare flexible thin polymeric surfaces containing a periodic arrangement of nanodimples and nanobumps of sub-micron size. Using a single master mold of self-assembled colloidal crystal, metasurfaces with different depths and heights of patterns with a fixed pitch are possible, which makes the process inexpensive and simple. These metasurfaces are studied for their diffuse and total transmission and reflection spectra in the visible range. The transmission haze and reflection haze are calculated from the measurements. The surface containing nanobumps of lesser pattern height result in higher values of reflection and transmission haze than from surfaces containing nanodimples of much higher depth for the same pitch. The haze is more dependent on the pattern depth or height and less dependent on the pitch of the pattern. Far-field transmission profiles measured in the same wavelength range from the patterned surfaces show that the scattering increases with the increase of the ratio of pattern depth/height to pitch, similar to the haze measurements conducted with a closed integrating sphere. These profiles show that the angular spread of scattered light in transmission is within 10°, explaining the reason for the relatively low transmission haze in all the patterned surfaces. Simulation results confirm that the nanobump pattern gives higher transmission haze compared to nanodimple pattern. By controlling the ratio of pattern depth/height to pitch of the features on these surfaces, both an increase in optical haze and a balance between total reflection intensity and total transmission intensity can be achieved.

摘要

采用具有成本效益的软压印光刻技术制备了柔性聚合物薄表面,该表面包含亚微米尺寸的纳米凹坑和纳米凸起的周期性排列。使用单个自组装胶体晶体主模具,可以制备具有固定间距、不同图案深度和高度的超表面,这使得该工艺既便宜又简单。研究了这些超表面在可见光范围内的漫透射和全透射及反射光谱。根据测量结果计算透射雾度和反射雾度。对于相同的间距,图案高度较小的纳米凸起表面比图案深度大得多的纳米凹坑表面具有更高的反射雾度和透射雾度值。雾度更多地取决于图案深度或高度,而较少取决于图案间距。在相同波长范围内从图案化表面测量的远场透射轮廓表明,散射随着图案深度/高度与间距之比的增加而增加,这与使用封闭积分球进行的雾度测量结果相似。这些轮廓表明,透射中散射光的角度扩展在10°以内,这解释了所有图案化表面透射雾度相对较低的原因。模拟结果证实,与纳米凹坑图案相比,纳米凸起图案具有更高的透射雾度。通过控制这些表面上特征的图案深度/高度与间距之比,可以实现光学雾度的增加以及全反射强度和全透射强度之间的平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fc9/11289189/bff0607387cb/12200_2024_125_Fig1_HTML.jpg

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