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Design Overview and Performance of the WIYN1 High Resolution Infrared Camera (WHIRC)

机译:WIYN1高分辨率红外摄像机(WHIRC)的设计概述和性能

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We present the design overview and on-telescope performance of the WIYN High Resolution Infrared Camera (WHIRC). As a dedicated near-infrared (0.8-2.5 mu m) camera on the WIYN Tip-Tilt Module (WTTM) port, WHIRC can provide near-diffraction-limited imaging with an FWHM of similar to 0.25 '' at K-s with active WTTM correction and does deliver typical imaging with an FWHM of similar to 0.6 '' without WTTM. WHIRC uses a 2048 x 2048 HgCdTe array from Raytheon's VIRGO line, which has been developed for the VISTA project. The WHIRC filter complement includes J,H, Ks, and 10 narrowband filters. WHIRC's compact design makes it the smallest near-infrared camera with this capability. We determine a gain of 3.3 +/- 0.2 e(-) ADU(-1) via a photon transfer analysis and a readout noise of similar to 19 e(-). A measured dark current of 0.13 e(-)s(-1) indicates that the cryostat is extremely light tight. A plate scale of 0.099 '' x 0.10 '' pixel(-1) results in a field of view (FOV) of 3.3' x 3.4', which is a compromise between the highest angular resolution achievable and the largest FOV correctable by WTTM. Measured throughput values (similar to 0.27 +/- 0.02 in H band) are consistent with those predicted for WHIRC based on an analysis of individual optical elements and detector quantum efficiency (QE). WHIRC's photometric quality is better than similar to 0.02 magnitudes in all bands. WHIRC is a general use instrument at the WIYN telescope enabling high-definition near-infrared imaging studies of a wide range of astronomical phenomena including star formation regions, stellar populations, and interstellar medium in nearby galaxies, high-z galaxies, and transient phenomena.
机译:我们介绍WIYN高分辨率红外摄像机(WHIRC)的设计概述和望远镜上的性能。作为WIYN倾斜模块(WTTM)端口上的专用近红外(0.8-2.5μm)摄像机,WHIRC可以通过主动WTTM校正在Ks上提供FWHM约为0.25英寸的近衍射极限成像。并且确实提供了具有0.6英寸FWHM的典型成像,而没有WTTM。 WHIRC使用了雷神公司的VIRGO系列的2048 x 2048 HgCdTe阵列,该阵列是为VISTA项目开发的。 WHIRC滤波器的补充包括J,H,Ks和10个窄带滤波器。 WHIRC的紧凑型设计使其成为具有此功能的最小的近红外摄像机。通过光子传输分析和类似于19 e(-)的读出噪声,我们确定增益为3.3 +/- 0.2 e(-)ADU(-1)。测得的暗电流为0.13 e(-)s(-1)表示低温恒温器非常不透光。 0.099英寸x 0.10英寸像素(-1)的平板尺寸导致3.3'x 3.4'的视场(FOV),这是可实现的最高角分辨率与WTTM可校正的最大FOV之间的折衷。根据对单个光学元件和检测器量子效率(QE)的分析,测得的通量值(类似于H波段的0.27 +/- 0.02)与为WHIRC预测的通量值一致。 WHIRC的光度质量在所有频段上均优于0.02幅值。 WHIRC是WIYN望远镜上的通用仪器,可对范围广泛的天文学现象进行高清近红外成像研究,这些天文学现象包括恒星形成区域,恒星种群以及附近星系,高z星系和瞬态现象的星际介质。

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