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CARMENES (III): an innovative and challenging cooling system for an ultra-stable NIR spectrograph

机译:卡门(III):一种创新且极具挑战性的冷却系统,用于超稳定的近红外光谱仪

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The CARMENES project, which is currently at FDR stage, is a last-generation exoplanet hunter instrument to beinstalled in the Calar Alto Observatory by 2014. It is split into two different spectrographs: one works within the visualrange while the other does it in the NIR range. Both channels need to be extremely stable in terms of mechanical andthermal behavior. Nevertheless, due to the operation temperature of the NIR spectrograph, the thermal stabilityrequirement (±0.07 K in 24 hours; ±0.01 K (goal)) becomes actually a major challenge. The solution here proposedconsists of a system that actively cools a shield enveloping the optical bench. Thus, the instability produced on the shieldtemperature is further damped on the optical bench due to the high mass of the latter, as well as the high thermaldecoupling between both components, the main heat exchange being produced by radiation.This system -which is being developed with the active collaboration and advice of ESO (Jean-Louis Lizon)- is composedby a previous unit which produces a stable flow of nitrogen gas. The flow so produced goes into the in-vacuum circuitryof the NIR spectrograph and removes the radiative heat load incoming to the radiation shield by means of a group ofproperly dimensioned heat exchangers.The present paper describes and summarizes the cooling system designed for CARMENES NIR as well as the analysesimplemented.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:CARMENES项目目前处于FDR阶段,是最新一代的系外行星猎人仪器,将于2014年安装在Calar Alto天文台中。它分为两个不同的光谱仪:一个在视觉范围内工作,另一个在NIR中工作范围。就机械和热行为而言,两个通道都必须极其稳定。然而,由于NIR光谱仪的工作温度,对热稳定性的要求(24小时内为0.07 K;目标为0.01K(目标))实际上已成为一个主要挑战。本文提出的解决方案由主动冷却包围光学平台的护罩的系统组成。因此,由于光具座的质量高,以及两个组件之间的高热解耦(主要是通过辐射产生的热量),光具座的屏蔽温度产生的不稳定性在光具座上进一步受到抑制。在ESO(Jean-Louis Lizon)的积极合作和建议下,由一个产生稳定氮气流的先前部门组成。这样产生的气流进入NIR光谱仪的真空电路中,并通过一组尺寸合适的热交换器消除了进入辐射屏蔽层的辐射热负荷。本文还描述并总结了为CARMENES NIR设计的冷却系统。作为分析的实现。©(2012)版权所有,美国光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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