论文标题

看到限制的成像天空调查 - 小与大型望远镜

Seeing-limited imaging sky surveys -- small vs. large telescopes

论文作者

Ofek, Eran O., Ben-Ami, Sagi

论文摘要

(删节)通常,望远镜建设和运营成本大于其收集区的速度快。这减慢了科学进步,使增加望远镜的大小变得昂贵且昂贵。望远镜掌握的指标代表了成像调查望远镜的能力并捕获广泛的科学目标的指标 - 望远镜掌握 - 每单位时间可检测到标准蜡烛的空间量。我们为掌握提供了一个分析表达式,还表明在背景为主的噪声限制中,最佳暴露时间是死时间的三倍。我们介绍了一个相关的度量标准,我们称之为信息包含的掌握,该指标总结了望远镜每单位时间观察到的所有来源的差异。为了观察主导的天空调查,就掌握,eTendue或收集区域优化而言,最近的技术进步使得构造多个小型望远镜而不是具有类似掌握或遗传的单个大型望远镜更具成本效益。在这些主要进步中,有<4微米像素的大型后侧照明CMOS探测器的可用性,非常适合样品标准,观察典型的小型快速望远镜的焦距。我们还讨论了多个小型望远镜用于光谱法的使用。我们认为,如果消除了使用多个小型望远镜实施具有成本效益的宽大成像和多对象光谱仪的所有障碍,则可以削弱使用多个小型望远镜的望远镜的动机,以构建新的单个大型射击(> 1m)可见光的望远镜。这些想法导致了目前正在建设的大型阵列调查望远镜(最后)的概念。

(Abridged) Typically large telescope construction and operation costs scale up faster than their collecting area. This slows scientific progress, making it expensive and complicated to increase telescope size. A metric that represents the capability of an imaging survey telescopes, and that captures a wide range of science objectives, is the telescope grasp -- the amount of volume of space in which a standard candle is detectable per unit time. We provide an analytic expression for the grasp, and also show that in the background-dominated noise limit, the optimal exposure time is three times the dead time. We introduce a related metric we call the information-content grasp, which summarizes the variance of all sources observed by the telescope per unit time. For seeing-dominated sky surveys, in terms of grasp, etendue, or collecting-area optimization, recent technological advancements make it more cost effective to construct multiple small telescopes rather than a single large telescope with a similar grasp or etendue. Among these key advancements are the availability of large-format back-side illuminated CMOS detectors with <4 micron pixels, well suited to sample standard seeing conditions given typical focal lengths of small fast telescopes. We also discuss the possible use of multiple small telescopes for spectroscopy. We argue that if all the obstacles to implementing cost-effective wide-field imaging and multi-object spectrographs using multiple small telescopes are removed, then the motivation to build new single large-aperture (>1m) visible-light telescopes which are seeing-dominated, will be weakened. These ideas have led to the concept of the, currently under construction, Large-Array Survey Telescope (LAST).

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