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SPIRou @CFHT: integration and performance of the cryogenic near infra-red spectrograph unit

机译:SPIRou @CFHT:低温近红外光谱仪单元的集成和性能

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SPIRou is an innovative near infra-red echelle spectropolarimeter and a high-precision velocimeter for the 3.6 m Canada-France-Hawaii Telescope (CFHT - Mauna Kea, Hawaii). This new generation instrument aims at detecting planetary worlds and Earth-like planets of nearby red dwarfs, in habitable zone, and studying the role of the stellar magnetic field during the process of low-mass stars / planets formation. The cryogenic spectrograph unit, cooled down at 80 K, is a fiber fed double-pass cross dispersed echelle spectrograph which works in the 0.98-2.40 urn wavelength range, allowing the coverage of the YJHK bands in a single exposure. Among the key parameters, a long-term thermal stability better than 2 mK, a relative radial velocity better than 1 m.s~(-1) and a spectral resolution of 70K are required. After ~1 year of assembly, integration and tests at IRAP/OMP (Toulouse, France) during 2016/2017, SPIRou was then shipped to Hawaii and completely re-integrated at CFHT during February 2018. A full instrument first light was performed on 24th of April 2018. The technical commissioning / science validation phase is in progress until June 2018, before opening to the science community. In this paper, we describe the work performed on integration and test of the opto-mechanical assemblies composing the spectrograph unit, firstly in-lab, in Toulouse and then on site, at CFHT. A review of the performances obtained in-lab (in 2017) and during the first on-sky results (in 2018) is also presented.
机译:SPIRou是一款创新的近红外阶梯光谱仪,是用于3.6 m加拿大-法国-夏威夷望远镜(CFHT-夏威夷莫纳克亚)的高精度测速仪。这款新一代仪器的目的是在可居住区域探测行星世界和附近红矮星的类地行星,并研究恒星磁场在低质量恒星/行星形成过程中的作用。低温光谱仪装置,冷却至80 K,是一种纤维进料的双通交叉分散电散射光谱仪,工作在0.98-2.40 um波长范围内,一次曝光即可覆盖YJHK波段。在关键参数中,要求长期热稳定性优于2 mK,相对径向速度优于1 m.s〜(-1),光谱分辨率为70K。在2016/2017年于IRAP / OMP(法国图卢兹)进行了约1年的组装,集成和测试之后,SPIRou随后被运送到夏威夷,并于2018年2月在CFHT完全重新集成。第24号进行了完整的仪器首次照明的技术调试/科学验证阶段正在进行中,直到2018年6月,然后才向科学界开放。在本文中,我们描述了组成光谱仪单元的光机械组件的集成和测试工作,首先是在图卢兹的实验室中,然后是在CFHT的现场。还介绍了在实验室(2017年)和首个天空绩效结果(2018年)中获得的表演的回顾。

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