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GravityCam : wide-field, high-resolution imaging and high-speed photometry instrument

机译:GravityCam:宽视野,高分辨率成像和高速测光仪

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摘要

The limits to the angular resolution achievable with conventional ground-based telescopes are unchanged over 70 years. Atmospheric turbulence limits image quality to typically ∼1 arcsec in practice. We have developed a new concept of ground-based imaging instrument called GravityCam capable of delivering significantly sharper images from the ground than is normally possible without adaptive optics. The acquisition of visible images at high speed without significant noise penalty has been made possible by advances in optical and near IR imaging technologies. Images are recorded at high speed and then aligned before combination and can yield a 3-5 fold improvement in image resolution. Very wide survey fields are possible with widefield telescope optics. We describe GravityCam and detail its application to accelerate greatly the rate of detection of Earth size planets by gravitational microlensing. GravityCam will also improve substantially the quality of weak shear studies of dark matter distribution in distant clusters of galaxies. The microlensing survey will also provide a vast dataset for asteroseismology studies. In addition, GravityCam promises to generate a unique data set that will help us understand of the population of the Kuiper belt and possibly the Oort cloud.
机译:常规地面望远镜所能达到的角分辨率极限在70年内没有变化。实际上,大气湍流将图像质量限制为通常约1弧秒。我们开发了一种名为GravityCam的基于地面的成像仪器的新概念,与没有自适应光学系统的情况相比,该成像仪能够从地面提供明显更清晰的图像。光学和近红外成像技术的进步使得在不产生明显噪声损失的情况下高速获取可见图像成为可能。高速记录图像,然后在组合之前对齐,可以使图像分辨率提高3-5倍。宽视野望远镜光学系统可以实现非常宽的调查范围。我们描述了GravityCam并详细介绍了其应用,以极大地提高重力微透镜对地球大小的行星的探测速度。 GravityCam还将大大改善遥远星系团中暗物质分布的弱剪切研究的质量。微透镜调查还将为星震学研究提供广阔的数据集。此外,GravityCam有望生成一个独特的数据集,这将有助于我们了解柯伊伯带和欧特云的数量。

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