Exploring the efficacy of subwavelength gratings as short-wavelength infrared filters.

IF 4.5 0 MATERIALS SCIENCE, MULTIDISCIPLINARY Discover nano Pub Date : 2024-06-17 DOI:10.1186/s11671-024-04045-1
Hezhuang Liu, Yixuan Huang, Jiang Wu
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Abstract

Advancements in nanofabrication technology have greatly facilitated research on nanostructures and their associated properties. Among these structures, subwavelength components have emerged as promising candidates for ultra-compact optical elements, can potentially supplant conventional optical components and enable the realization of compact and efficient optical devices. Spectral analysis within the infrared spectrum offers a wealth of information for monitoring crop health, industrial processes, and target identification. However, conventional spectrometers are typically bulky and expensive, driving an increasing demand for cost-effective spectral sensors. Here we investigate three distinct subwavelength grating structures designed to function as narrowband filters within the short-wavelength infrared (SWIR) range. Through simple adjustments to the period of grating strips, these filters selectively transmit light across a wide wavelength range from 1100 to 1700 nm with transmission exceeding 70% and full width at half maximum (FWHM) down to 6 nm. Based on a simple design, the results present great potential of subwavelength grating filters for multiband integration and developing ultra-compact spectral sensors.

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探索亚波长光栅作为短波长红外滤光片的功效。
纳米加工技术的进步极大地促进了对纳米结构及其相关特性的研究。在这些结构中,亚波长元件已成为超紧凑光学元件的理想候选元件,有可能取代传统光学元件,实现紧凑高效的光学设备。红外光谱内的光谱分析为监测作物健康、工业流程和目标识别提供了丰富的信息。然而,传统光谱仪通常体积庞大、价格昂贵,因此对高性价比光谱传感器的需求与日俱增。在此,我们研究了三种不同的亚波长光栅结构,它们被设计为短波红外(SWIR)范围内的窄带滤光片。通过简单调整光栅条的周期,这些滤光片可在 1100 纳米到 1700 纳米的宽波长范围内选择性地透射光,透射率超过 70%,半最大全宽 (FWHM) 低至 6 纳米。基于简单的设计,这些成果展示了亚波长光栅滤波器在多波段集成和开发超小型光谱传感器方面的巨大潜力。
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