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The wide-field imaging interferometry testbed

机译:宽场成像干涉测量测量标记

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We are developing a Wide-Field Imaging Interferometry Testbed (WIIT) in support of design studies for NASN's future space interferometry missions, in particular the SPIRIT and SPECS far-infrared/submillimeter interferometers. WILT operates at optical wavelengths and uses Michelson beam combination to achieve both wide-field imaging and high-resolution spectroscopy. It will be used chiefly to test the feasibility of using a large-format detector array at the image plane of the sky to obtain wide-field interferometry images through mosaicing techniques. In this setup each detector pixel records interferograms corresponding to averaging a particular pointing range on the sky as the optical path length is scanned and as the baseline separation and orientation is varied. The final image is constructed through spatial and spectral Fourier transforms of the recorded interferograms for each pixel, followed by a mosaic/joint-deconvolution procedure of all the pixels. In this manner the image within the pointing range of each detector pixel is further resolved to an angular resolution corresponding to the maximum baseline separation for fringe measurements. We present the motivation for building the testbed, show the optical, mechanical, control and data system design, and describe the image processing requirements and algorithms. WILT is presently under construction at NASA's Goddard Space Flight Center.
机译:我们正在开发一种宽阔的成像干涉测量标准(WIIT),以支持NASN未来空间干涉机构的设计研究,特别是精神和规格远红外/淹没的干涉仪。威尔特在光学波长下运行,并使用迈克尔逊梁组合来实现宽场成像和高分辨率光谱。它将主要用于测试在天空的图像平面上使用大格式检测器阵列的可行性,以通过镶嵌技术获得宽场干涉测量图像。在该设置中,每个检测器像素记录对应于对应于天空上的特定指示范围的干涉图,因为扫描光路长度并且随着基线分离和方向而变化。通过针对每个像素的记录干涉图的空间和光谱傅里叶变换构成最终图像,然后是所有像素的镶嵌/关节卷积过程。以这种方式,每个检测器像素的指向范围内的图像进一步解析为与用于条纹测量的最大基线分离相对应的角度分辨率。我们介绍了构建测试平台的动机,显示了光学,机械,控制和数据系统设计,并描述了图像处理要求和算法。威尔蒂目前正在美国宇航局的戈达德太空飞行中心建设。

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