论文标题

包装天空:大型望远镜阵列的覆盖范围优化和评估

Packing the sky: coverage optimization and evaluation for large telescope arrays

论文作者

Galliher, Nathan W., Law, Nicholas M., Corbett, Hank, Gonzalez, Ramses, Machia, Lawrence, Soto, Alan Vasquez

论文摘要

低成本天文设备的最新进展,包括高质量的中型伸缩望远镜和低噪声CMOS探测器,使大型光学望远镜阵列的部署在财务上可行且科学上很有趣。 Argus光学阵列就是这样一种系统,由900个八英寸望远镜组成,该系统计划覆盖每次曝光中的整个夜空,并能够成为最深,最快的北半球天空调查。随着这类新的望远镜,带来了新的挑战:确定最佳的单个望远镜点,以实现大量望远镜的所需的天空覆盖范围和重叠,并使用单独的安装座,较大的安装结构,包含望远镜超值群的较大安装结构或单个安装架上的完整阵列来实现这些点。在本文中,我们描述了一种创建指向模式的方法,以及一种用于迅速评估天空覆盖范围和重叠的算法,并将其应用于Argus阵列。使用此模式,将望远镜放入半球形排列中,可以将其安装为单个单片阵列或分成几个较小的子阵列。这些方法可以应用于其他大型阵列,在这些大阵列中,天空包装具有挑战性且间距均匀的阵列细分是安装所需的。

Recent advancements in low-cost astronomical equipment, including high-quality medium-aperture telescopes and low-noise CMOS detectors, have made the deployment of large optical telescope arrays both financially feasible and scientifically interesting. The Argus Optical Array is one such system, composed of 900 eight-inch telescopes, which is planned to cover the entire night sky in each exposure and is capable of being the deepest and fastest Northern Hemisphere sky survey. With this new class of telescope comes new challenges: determining optimal individual telescope pointings to achieve required sky coverage and overlaps for large numbers of telescopes, and realizing those pointings using either individual mounts, larger mounting structures containing telescope subarrays, or the full array on a single mount. In this paper, we describe a method for creating a pointing pattern, and an algorithm for rapidly evaluating sky coverage and overlaps given that pattern, and apply it to the Argus Array. Using this pattern, telescopes are placed into a hemispherical arrangement, which can be mounted as a single monolithic array or split into several smaller subarrays. These methods can be applied to other large arrays where sky packing is challenging and evenly spaced array subdivisions are necessary for mounting.

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