CRIRES+ on its way to VLT (Conference Presentation)

R. Follert, R. Dorn, A. Brucalassi, P. Bristow, A. Hatzes, U. Seemann, N. Piskunov, A. Lavail, B. Klein, C. Cumani, C. Moins, D. Ives, E. Stempels, E. Oliva, I. Molina-Conde, J. Lizon, M. Haug, Siegfried Eschbaumer, T. Marquart, U. Heiter, S. Tordo, R. Hinterschuster, Yves Jung, J. Paufique, A. Haimerl, J. Stegmeier, J. Kirchbauer, C. Schmidt, E. Valenti, L. Pasquini, A. Reiners, H. Anwand-Heerwart, K. Hauptner, Tim Umlauf, Peter Jeep, P. Rhode, C. Marvin
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引用次数: 1

Abstract

The CRIRES upgrade project (CRIRES+) will improve the performance and observing efficiency of the successful adaptive optics (AO) assisted CRIRES instrument. CRIRES was in operation from 2006 to 2014 at the 8m UT1 (Unit Telescope) of the Very Large Telescope (VLT, Cerro Paranal, Chile) observatory accessing a parameter space (wavelength range and spectral resolution) largely uncharted back then. CRIRES+ will be commissioned in summer 2018 at UT3 of the VLT. It will provide a spectral resolution of R=50.000 or 100.000 in an accessible wavelength range of 0.95 – 5.3 μm (YJHKLM bands). For each band there is a separate, performance optimized reflection grating as the cross dispersing element. The slit length of 10 arcsec will provide, in combination with the new focal plane array of three HAWAII 2RG detectors, cross-dispersed (7 – 9 orders simultaneous) echelle spectra. In total, the observing efficiency will be improved by a factor of 10 comparing CRIRES+ and CRIRES. Furthermore, the upgraded instrument will be equipped with a number of novel wavelength calibration units, including a gas absorption cell optimized for use in K band and an etalon system. A spectro-polarimetric unit will allow the recording of circular and linear polarized spectra. The new metrology system will ensure a very high system stability and repeatability. Last but not least the upgrade will be supported by dedicated data reduction software allowing the community to take full advantage of the new capabilities. The full system is being integrated at ESO and system testing has commenced. Acceptance of the instrument in Europe (PAE) is scheduled for the second quarter of 2018. Commissioning at the VLT observatory will start mid 2018. This article gives an overview of the final configuration of the instrument. The instrument will be available to the astronomic community from Spring 2019 with a call for proposals in October 2018.
CRIRES+在通往VLT的路上(会议演示)
CRIRES升级项目(CRIRES+)将提高成功的自适应光学(AO)辅助CRIRES仪器的性能和观测效率。CRIRES于2006年至2014年在超大望远镜(VLT, Cerro paral, Chile)天文台的8米UT1(单位望远镜)上运行,访问了当时基本上未知的参数空间(波长范围和光谱分辨率)。CRIRES+将于2018年夏季在VLT的UT3投入使用。它将在0.95 - 5.3 μm (YJHKLM波段)的可访问波长范围内提供R=50.000或100.000的光谱分辨率。每个波段都有一个独立的、性能优化的反射光栅作为交叉色散元件。10弧秒的狭缝长度将与三个夏威夷2RG探测器的新焦平面阵列相结合,提供交叉分散(7 - 9阶同时)梯队光谱。总的来说,与CRIRES+和CRIRES相比,观测效率将提高10倍。此外,升级后的仪器将配备许多新的波长校准单元,包括用于K波段优化的气体吸收池和一个标准子系统。一个光谱偏振单元将允许记录圆和线偏振光谱。新的计量系统将确保非常高的系统稳定性和可重复性。最后但并非最不重要的是,升级将由专用的数据减少软件支持,使社区能够充分利用新功能。整个系统正在ESO进行集成,系统测试已经开始。该工具在欧洲的验收(PAE)计划于2018年第二季度进行。VLT天文台的调试将于2018年年中开始。本文概述了该仪器的最终配置。该仪器将于2019年春季向天文学界开放,并于2018年10月征集提案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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