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CONTRAST AND SIGNAL-TO-NOISE RATIO IN LONG-DISTANCE STARLIGHT IMAGING

机译:长距离星光成像中的对比度和信噪比

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摘要

A small telescope on an airplane or in low Earth orbit can, in principle, resolve ground objects under starlight with useful resolution. For an similar to 50-cm aperture and similar to 100-s exposure, one can obtain a resolution of tens of centimeters from an aircraft and a few meters from orbit. Such starlight images are photon poor, and feature detection depends on photon statistics. Scattered light, atmospheric absorption, and foreground airglow all degrade image contrast. I report an investigation into image signal-to-noise ratio using first-order analytical approximations. We find that, for a given angular resolution, the signal-to-noise ratio for spaceborne images is degraded approximately a factor of 1.7, compared with airborne images, by foreground airglow. Image signal-to-noise ratio improves as the passband moves to the red and as skies become brighter from artificial illumination. (C) 1996 Optical Society of America [References: 18]
机译:原则上,飞机或近地轨道上的小型望远镜可以在星光下以有用的分辨率分辨地面物体。对于类似50厘米的光圈和类似100秒的曝光,人们可以从飞机上获得几十厘米的分辨率,而从轨道上获得几米的分辨率。这样的星光图像光子差,并且特征检测取决于光子统计。散射光,大气吸收和前景光晕都会降低图像对比度。我报告了使用一阶解析近似方法对图像信噪比进行的研究。我们发现,对于给定的角分辨率,与前景图像相比,前景图像会比机载图像将星载图像的信噪比降低约1.7倍。随着通带变为红色,并且由于人工照明,天空变得更亮,图像信噪比也会提高。 (C)1996年美国眼镜学会[参考文献:18]

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