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A Long Wave Infrared (LWIR) spectral imager (7.7 to 12.3 μ) based on cooled detector array and high resolution Circular Variable Filter (CVF)

机译:基于冷却探测器阵列和高分辨率圆形可变滤波器(CVF)的长波红外(LWIR)光谱成像仪(7.7至12.3μ)

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Spectral imagers in the Long Wave IR spectral range (8 to 12 microns) suffer from the problem of high production costs because the existing commercial cooled array detectors are expensive, and in fact they are prohibitively expensive for many applications. As a result, the drive to lower the cost of Long Wave IR spectral imagers is strong: this is the main motivation for CI to investigate a new design that allows these spectral imagers to be more affordable. One area of possible cost reduction without relinquishing the advantages of a cryogenically cooled detector is the method used to provide the spectral information. CI Systems has developed a long wave IR (7.7 to 12.3 micron) spectral imager concept using a Circular Variable Filter (CVF), (a proprietary component based on multiple layer interference filter technology) which has advantages over the interferometric Fourier Transform method commonly used in this spectral range. The CVF method has its own development challenges; however, once proven, this concept may be more suitable and affordable for applications in which a spectral resolution of 0.5% of the wavelength (or 50 nm at 10 μ) is required. The design of the optical system must minimize background signals without being cooled to cryogenic temperatures, so we called it Virtually COld (or VICO). CI is in the final stages of prototype building and characterization. Present initial calibration results and measurement examples are given in this paper.
机译:长波红外光谱范围(8至12微米)的光谱成像仪存在生产成本高的问题,因为现有的商用冷却阵列检测器价格昂贵,实际上,对于许多应用而言,它们的价格过高。结果,降低长波红外光谱成像仪成本的动力很强:这是CI研究一种新设计的主要动机,该新设计可使这些光谱成像仪更便宜。用于提供光谱信息的方法是在不放弃低温冷却探测器的优点的情况下可能降低成本的一个领域。 CI Systems使用圆形可变滤波器(CVF)(基于多层干涉滤波器技术的专有组件)开发了长波IR(7.7至12.3微米)光谱成像仪概念,它比通常用于干涉测量的傅立叶变换方法具有优势。这个光谱范围。 CVF方法有其自身的发展挑战。但是,一旦得到验证,该概念可能更适合于价格适中于波长0.5%(或10μm时为50 nm)的应用,且价格合理。光学系统的设计必须在不将其背景信号降到最低的情况下将其冷却至低温,因此我们将其称为Virtually Cold(或VICO)。 CI处于原型构建和表征的最后阶段。本文给出了当前的初始校准结果和测量示例。

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