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IMACS: the wide-field imaging spectrograph on Magellan-Baade

机译:IMACS:Magellan-BAADE上的宽野成像光谱仪

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Bigelow & Dressler1 reported on the design and construction of IMACS - the Inamori-Magellan Areal Camera and Spectrograph. IMACS was installed on the Magellan-Baade 6.5-m telescope at the Carnegie Institution's Las Campanas Observatory in Chile in August, 2003, and was phased into regular operation in the remaining months of that year (Osip et al2). IMACS is now the most-used instrument on the Baade telescope, accounting for 63% of the nights available for astronomy in the 2005 observing year. IMACS has two basic operating modes. A single 6-inch beam refractive collimator feeds either (1) an f/4 all-spherical refractive camera delivering 0.11 arcsec/pixel, or (2) a double-asphere refractive camera with oil-coupled multiplets producing a scale of 0.20 arcsec/pixel. The detector for both foci is an 8K x 8K mosaic camera of 8 SITe 2K x 4K 15 μ CCDs. The collimator and f/4 camera have performed to design specifications and have delivered 0.45 arcsec images across the 15 arcmin square field. The f/2 camera has delivered images of 0.55 to 0.65 arcsec across its 27 arcmin diameter field in excellent seeing (FWHM ~ 0.40 arcsec). The f/4 camera uses 6-inch reflecting gratings to obtain spectroscopy at multiple resolutions ranging from R=1350-9375; the f/2 camera uses three 6-inch grisms to achieve resolutions of R=450, 600, and 900 over its larger field. We routinely cut hundreds of slits in 30-inch diameter, stainless steel, spherical-shell slitmasks with a commercial laser system. Alignment procedures for observing are simple and efficient, typically requiring 5-10 minutes per set-up. IMACS - an unusually versatile instrument - includes an IFU built by Durham University with two 5" x 8" (f/2) or 4" x 7" (f/4) apertures, each sampled by 1000 optical fibers. A Multi-Object Echelle mode, which can obtain 10-15 full wavelength R=20000 spectra, has been fully tested and has now started regular operation. The Maryland-Magellan Tunable Filter (MMTF) has been lab tested and will be commissioned in June 2006. In early 2007, Gladder's Image-Slicing Multislit Option (GISMO) will be ready for testing, and a second Mosaic CCD camera - which will simplify operations, increase sensitivity, and allow rapid access to both f/2 and f/4 modes - is under construction. We report on the design challenges posed and met by the variety of operating modes and stringent performance requirements. We describe some issues encountered in the past two years in bringing such a complex, multi-mode instrument to the Magellan Observatory.
机译:BigeloW&Discler1报道了IMACS的设计和施工 - Inamori-Magellan AreaM相机和光谱仪。 2003年8月在Carnegie Institution的Las Campanas天文台的Magellan-Baade 6.5-M望远镜上安装了IMacs,并在那年剩下的几个月内逐步逐步举行(OSIP等人)。 IMACS现在是Baade望远镜上最常用的仪器,占2005年观测年度天文学的63%的夜晚。 IMAC有两个基本的操作模式。单个6英寸梁折射准直器供给(1)F / 4全球形折射相机0.11 ACCSEC / PIXEL,或(2)双沥青折射相机,具有换油的多平台,产生0.20 Arcsec /像素。两个焦点的探测器是8个站点2k x 4k15μccds的8k x 8k马赛克相机。准直器和F / 4相机已经对设计规范进行了设计,并在15个Accmin Square字段中传送了0.45个ArcSec图像。 F / 2摄像机在其27个Arcmin直径场中提供了0.55至0.65弧度的图像,优异的观察(FWHM〜0.40 Arcsec)。 F / 4相机使用6英寸反射光栅,以获得从R = 1350-9375的多个分辨率的光谱学; F / 2相机使用三个6英寸的生动,实现R = 450,600和900的分辨率在其较大的领域。我们经常用商业激光系统剪下了30英寸直径,不锈钢,球形 - 壳牌泥浆泥浆。观察的对准程序简单有效,通常需要每次设置5-10分钟。 IMACS - 一种异常多功能的仪器 - 包括达勒姆大学建造的IFU,具有两个5“x 8”(f / 2)或4“x 7”(f / 4)孔,每个光纤采样。可以获得10-15个全波长r = 20000光谱的多目标梯长模式已经完全测试,现在已经开始常规操作。 Maryland-Magellan可调过滤器(MMTF)已经测试过实验室,并将于2006年6月委托。2007年初,Gladder的图像切片MultiSlit选项(GISMO)将准备好测试,以及第二款马赛克CCD相机 - 这将简化操作,提高灵敏度,并允许快速访问F / 2和F / 4模式 - 正在建设中。我们报告了各种操作模式和严格的性能要求所带来和满足的设计挑战。我们描述了过去两年遇到的一些问题,使这种复杂的多模式仪器达到Magellan天文台。

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