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Finite Size Narrow-Band Transmission Filters for Real-Time Short Wave IR Spectroscopy and Imaging

机译:有限尺寸窄带传动滤波器,用于实时短波IR光谱和成像

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This contribution presents the design and simulation of finite size narrow band transmission filters for applications in realtime and remote short wave infrared (SWIR) spectroscopy and imaging. The results can ultimately be extended to hyperspectral imaging that has gained interest in many fields ranging from agriculture to surveillance. As chemical compounds possess unique set of sharp spectral signatures, they can be differentiated using wideband spectral scanning. However, such standard approaches require bulky instruments and long acquisition times together with post-processing of acquired data. These technological bottlenecks result in a diminished usefulness of such systems in scenarios demanding short response times, such as law enforcement, homeland security, and military applications. To overcome these limitations, narrow-band and pixel-size filters can be incorporated to focal plane arrays for real-time spectral imaging systems. In this study, we explored several designs of narrow-band, finite-sized (<10λ) SWIR transmission filters based on one dimensional and two dimensional guided mode resonance (GMR) gratings. The filter designs utilize dielectrics such as SiO_2 and TiO_2 and are optimized for high throughput for a narrow transmission band (~ 10 nm) within a large stop band (~ 500 nm). The electric field, fringing fields, and transmission response are investigated utilizing HFSS, CST, and Matlab software for normal incidence (dielectric losses accounted for in simulations). The fringing fields at the edges are also explored for various thicknesses of conductive reflectors fencing the filter edges. Tunability of the filters are also presented as a function of their design features, including dielectric thicknesses, grating periodicity, and grating duty cycle.
机译:此贡献介绍了用于实时和远程短波红外(SWIR)光谱和成像的应用的有限尺寸窄带传输滤波器的设计和仿真。结果最终可以扩展到高光谱成像,这对来自农业的许多田地感兴趣地进行了兴趣。随着化学化合物具有独特的尖锐光谱签名,可以使用宽带光谱扫描来区分。然而,这种标准方法需要庞大的仪器和长时间的收购时间以及获得的数据的后处理。这些技术瓶颈导致在要求短暂的响应时间,如执法,国土安全和军事应用等系统中减少了这种系统的有用性。为了克服这些限制,可以将窄带和像素尺寸滤波器结合到用于实时光谱成像系统的焦平面阵列。在这项研究中,我们探讨了基于一维和二维引导模式谐振(GMR)光栅的窄带,有限(<10λ)SWIR传输滤波器的几种设计。过滤器设计利用诸如SiO_2和TiO_2的电介质,并且在大型止动频带(〜500nm)内的窄传输带(〜10nm)的高吞吐量进行了优化。利用HFSS,CST和MATLAB软件来研究电场,流苏领域和传输响应,以进行正常入射(模拟中占介电损耗)。还探讨了边缘处的环状田地,用于各种厚度的导电反射器围绕过滤器边缘。滤波器的可调谐性也作为其设计特征的函数呈现,包括介电厚度,光栅周期性和光栅占空比。

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