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Unveiling the Dynamic Infrared Sky with Gattini-IR

机译:用Gattini-IR揭示动态红外天空

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While optical and radio transient surveys have enjoyed a renaissance over the past decade, the dynamic infrared sky remains virtually unexplored. The infrared is a powerful tool for probing transient events in dusty regions that have high optical extinction, and for detecting the coolest of stars that are bright only at these wavelengths. The fundamental roadblocks in studying the infrared time-domain have been the overwhelmingly bright sky background (250 times brighter than optical) and the narrow field-of-view of infrared cameras (largest is 0.6 sq deg). To begin to address these challenges and open a new observational window in the infrared, we present Palomar Gattini-IR: a 25 sq degree, 300mm aperture, infrared telescope at Palomar Observatory that surveys the entire accessible sky (20,000 sq deg) to a depth of 16.4 AB mag (J band, 1.25um) every night. Palomar Gattini-IR is wider in area than every existing infrared camera by more than a factor of 40 and is able to survey large areas of sky multiple times. We anticipate the potential for otherwise infeasible discoveries, including, for example, the elusive electromagnetic counterparts to gravitational wave detections. With dedicated hardware in hand, and a F/1.44 telescope available commercially and cost-effectively, Palomar Gattini-IR will be on-sky in early 2017 and will survey the entire accessible sky every night for two years. We present an overview of the pathfinder Palomar Gattini-IR project, including the ambitious goal of sub-pixel imaging and ramifications of this goal on the opto-mechanical design and data reduction software. Palomar Gattini-IR will pave the way for a dual hemisphere, infrared-optimized, ultra-wide field high cadence machine called Turbo Gattini-IR. To take advantage of the low sky background at 2.5 um, two identical systems will be located at the polar sites of the South Pole, Antarctica and near Eureka on Ellesmere Island, Canada. Turbo Gattini-IR will survey 15,000 sq. degrees to a depth of 20AB, the same depth of the VISTA VHS survey, every 2 hours with a survey efficiency of 97%.
机译:虽然光学和无线电瞬态调查在过去十年中享有文艺复兴时期,但动态红外天空几乎尚未开发。红外线是用于探测具有高光学灭火的尘埃区域中的瞬态事件的强大工具,并且用于检测仅在这些波长处光亮的恒星的最恒定的恒星。研究红外时域的基本障碍是绝佳的明亮的天空背景(比光学比光亮250倍),红外相机的狭窄视野(最大为0.6平方米)。要开始解决这些挑战并在红外线开放新的观测窗口,我们展示了Palomar Gattini-IR:25平方米,300毫米光圈,在Palomar天文台上的红外望远镜,将整个可访问的天空(20,000平方米)(20,000平方米)进行深度调查每晚16.4 AB Mag(J Band,1.25um)。 Palomar Gattini-IR在面积比每个现有的红外线相机超过40倍,能够多次调查大面积的天空。我们预测其他任何不可行的发现的可能性,包括例如重力波检测的难以捉摸的电磁对应物。在手中的专用硬件和商业和成本有效的F / 1.44望远镜,Palomar Gattini-IR将于2017年初在天空中,每天晚上都会调查整个可达的天空两年。我们概述了Palomind Palomar Gattini-IR项目的概述,包括对光电设计和数据减少软件的雄像素成像的雄心勃勃的目标和这种目标的后果。 Palomar Gattini-IR将为双半球,红外优化,超宽领域高Cadence机器铺平道路,称为Turbo Gattini-IR。为了利用2.5米的低空背景,两个相同的系统将位于加拿大Ellesmere Island的南极,南极洲和Eureka附近的极地景点。 Turbo Gattini-IR将调查15,000平方米,深度为20ab,相同的vista VHS调查深度,每2小时,调查效率为97%。

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