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The PAU camera and the PAU survey at the William Herschel Telescope

机译:William Herschel望远镜的PAU相机和PAU测量

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The Physics of the Accelerating Universe (PAU) is a project whose main goal is the study of dark energy. For this purpose, a new large field of view camera (the PAU Camera, PAUCam) is being built. PAUCam is designed to carry out a wide area imaging survey with narrow and broad band filters spanning the optical wavelength range. The PAU Camera is now at an advance stage of construction. PAUCam will be mounted at the prime focus of the William Herschel Telescope. With the current WHT corrector, it will cover a 1 degree diameter field of view. PAUCam mounts eighteen 2k×4k Hamamatsu fully depleted CCDs, with high quantum efficiency up to 1 μm. Filter trays are placed in front of the CCDs with a technologically challenging system of moving filter trays inside the cryostat. The PAU Camera will use a new set of 42 narrow band filters ranging from ~4400 to ~8600 angstroms complemented with six standard broad-band filters, ugrizY. With PAUCam at the WHT we will carry out a cosmological imaging survey in both narrow and broad band filters that will perform as a low resolution spectroscopic survey. With the current survey strategy, we will obtain accurate photometric redshifts for galaxies down to iisubAB/sub/i~22.5 detecting also galaxies down to iisubAB/sub/i~24 with less precision in redshift. With this data set we will obtain competitive constraints in cosmological parameters using both weak lensing and galaxy clustering as main observational probes.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:加速宇宙(PAU)的物理是一个项目,其主要目标是对黑能的研究。为此,正在建造一个新的大型视野相机(Pau相机,Paucam)。 Paucam旨在开展广域成像调查,具有跨越光波长范围的窄和宽带滤波器。 Pau相机现在处于建筑的先进阶段。佩曼将安装在威廉·赫歇尔望远镜的主要重点。使用当前的WHT校正器,它将覆盖1度直径的视野。 Paucam安装十八次2k和时代; 4K Hamamatsu完全耗尽的CCD,量效高达1Μ m。过滤器托盘放置在CCD的前面,具有在低温恒温器内的移动过滤器托盘的技术具有挑战性的系统。 Pau相机将使用一组新的42个窄带滤波器,范围为〜4400至8600埃,辅以六个标准的宽带滤波器,UGrizy。在WHT的Paucam,我们将在狭窄和宽带过滤器中进行宇宙学成像调查,该调查将作为低分辨率光谱调查进行。通过当前的调查策略,我们将获得用于下降到 i ab 〜22.5的准确光度射频.2.5检测到 i ab 〜24,在红移方面较低。利用此数据集,我们将使用弱镜头和银河集群作为主要观察探针获得宇宙学参数的竞争约束。©(2012)照片光学仪表工程师(SPIE)的版权协会。仅供个人使用的摘要下载。

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