New multiband IR imaging optics

S. Bayya, J. Sanghera, Woohong Kim, D. Gibson, E. Fleet, B. Shaw, M. Hunt, I. Aggarwal
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引用次数: 8

Abstract

We report new multispectral materials that transmit from 0.9 to < 12 µm in wavelength. These materials fill up the glass map for multispectral optics and vary in refractive index from 2.38 to 3.17. They show a large spread in dispersion (Abbe number) and offer some unique solutions for multispectral optics designs. One of the glasses developed is a very good candidate to replace Ge, as it has a combination of excellent properties, including high Abbe number in the LWIR, high index of 3.2, 60% lower dn/dT, and better thermal stability at working temperatures. Our results also provide a wider selection of optical materials to enable simpler achromat designs. For example, we have developed other glasses that have relatively high Abbe number in both the MWIR and LWIR regions, while our MILTRAN ceramic has low Abbe number in both regions. This makes for a very good combination of glasses and MILTRAN ceramic (analogous to crown and flint glasses in the visible) for MWIR + LWIR dual band imaging. We have designed preliminary optics for one such imager with f/2.5, 51 mm focal length and 22 degrees FOV using a spaced doublet of NRL's glass and MILTRAN ceramic. NRL's approach reduces the number of elements, weight, complexity and cost compared with the approach using traditional optics. Another important advantage of using NRL glasses in optics design is their negative or very low positive dn/dT, that makes it easier to athermalize the optical system.
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新型多波段红外成像光学
我们报道了新的多光谱材料,其透射波长从0.9到< 12µm。这些材料填满了多光谱光学的玻璃图,折射率从2.38到3.17不等。它们具有较大的色散分布(阿贝数),为多光谱光学设计提供了一些独特的解决方案。其中一种开发的玻璃是替代Ge的很好的候选者,因为它具有优异的性能组合,包括LWIR中的高阿贝数,3.2的高指数,降低60%的dn/dT,以及在工作温度下更好的热稳定性。我们的研究结果还提供了更广泛的光学材料选择,以实现更简单的消色差设计。例如,我们开发的其他玻璃在MWIR和LWIR区域都具有相对较高的阿贝数,而我们的MILTRAN陶瓷在这两个区域都具有较低的阿贝数。这使得玻璃和MILTRAN陶瓷(类似于可见的冠状和燧石玻璃)的非常好的组合用于MWIR + LWIR双波段成像。我们已经为一个这样的成像仪设计了初步的光学器件,使用NRL的玻璃和MILTRAN陶瓷的间隔双重透镜,具有f/2.5, 51毫米焦距和22度的FOV。与使用传统光学的方法相比,NRL的方法减少了元件的数量、重量、复杂性和成本。在光学设计中使用NRL玻璃的另一个重要优势是它们的负或非常低的正dn/dT,这使得光学系统更容易热化。
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