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Results of the verification of the NIR MOS EMIR

机译:NIR MOS EMIR的验证结果

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EMIR is one of the first common user instruments for the GTC, the 10 meter telescope operating at the Roque de los Muchachos Observatory (La Palma, Canary Islands, Spain). EMIR is being built by a Consortium of Spanish and French institutes led by the Instituto de Astrofisica de Canarias (IAC). EMIR is primarily designed to be operated as a MOS in the K band, but offers a wide range of observing modes, including imaging and spectroscopy, both long slit and multiobject, in the wavelength range 0.9 to 2.5 μm. This contribution reports on the results achieved so far during the verification phase at the IAC prior to its shipment to the GTC for being commissioned, which is due by mid 2015. After a long period of design and fabrication, EMIR finally entered into its integration phase by mid 2013. Soon after this, the verification phase at the IAC was initiated aimed at configuring and tuning the EMIR functions, mostly the instrument control system, which includes a sophisticated on line data reduction pipeline, and demonstrating the fulfillment of the top level requirements. We have designed an ambitious verification plan structured along the three kind of detectors at hand: the MUX and the engineering and scientific grade arrays. The EMIR subsystems are being integrated as they are needed for the purposes of the verification plan. In the first stage, using the MUX, the full optical system, but with a single dispersive element out of the three which form the EMIR suite, the two large wheels mounting the filters and the pseudo-grisms, plus the detector translation unit holding the MUX, were mounted. This stage was mainly devoted to learn about the capabilities of the instrument, define different settings for its basic operation modes and test the accuracy, repeatability and reliability of the mechanisms. In the second stage, using the engineering Hawaii2 FPA, the full set of pseudo-grisms and band filters are mounted, which means that the instrument is fully assembled except for the cold slit unit, a robotic reconfigurable multislit mask system capable of forming multislit pattern of 55 different slitlets in the EMIR focal plane. This paper will briefly describe the principal units and features of the EMIR instrument as the main results of the verification performed so far are discussed. The development and fabrication of EMIR is funded by GRANTECAN and the Plan Nacional de Astronomia y Astrofisica (National Plan for Astronomy and Astrophysics, Spain).
机译:EMIR是GTC的首批常见用户仪器之一,这是在Roque de los Muchachos天文台(西班牙加那利群岛拉帕尔玛)运行的10米望远镜。 EMIR由西班牙和法国的加纳里亚天文学研究所(IAC)牵头的研究机构联盟建立。 EMIR最初被设计为在K波段中作为MOS工作,但在0.9至2.5μm的波长范围内,提供了宽范围的观察模式,包括长缝和多目标成像和光谱学。此文稿报告了IAC在验证阶段迄今所取得的成果,该阶段是在IAC交付给GTC进行调试之前,该阶段将于2015年年中进行。经过长时间的设计和制造,EMIR终于进入了集成阶段到2013年年中。此后不久,IAC的验证阶段就开始了,旨在配置和调整EMIR功能(主要是仪器控制系统),该系统包括复杂的在线数据缩减管道,并证明满足最高要求。我们设计了一个雄心勃勃的验证计划,该计划根据手头的三种检测器构建:MUX以及工程和科学级阵列。出于验证计划的目的,EMIR子系统已集成在一起,因为它们是必需的。在第一阶段中,使用完整的光学系统MUX,但在构成EMIR套件的三个组件中只有一个色散元件,两个大轮子安装了滤光片和伪光栅,加上检测器平移单元固定了MUX,已安装。该阶段主要致力于了解仪器的功能,为仪器的基本操作模式定义不同的设置,并测试机械装置的准确性,可重复性和可靠性。在第二阶段中,使用工程学Hawaii2 FPA安装了完整的伪网格和带状滤波器,这意味着除了冷缝单元以外,该仪器已完全组装,冷缝单元是一种可自动重构的多缝口罩系统,能够形成多缝图案。在EMIR焦平面中有55个不同的狭缝。本文将简要介绍EMIR仪器的主要单位和功能,并讨论迄今为止进行的验证的主要结果。 EMIR的开发和制造由GRANTECAN和国家天文学与天文学计划(西班牙国家天文学和天体物理学计划)资助。

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