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Remote refilling of LN2 cryostats for high sensitivity astronomical applications

机译:用于高灵敏度天文应用的LN2低温仪的远程再填充

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The most sensitive observation mode of the ESO VLT (European Southern Observatory Very Large Telescope) is the interferometric mode, where the 4 Units Telescopes are directed to the same stellar object in order to operate as a gigantic interferometer. The beam is then re-combined in the main interferometry laboratory and fed into the analyzing instruments. In order not to disturb the performance of the Interferometer, this room is considered as a sanctuary where one enters only in case of extreme need. A simple opening of the door would create air turbulences affecting the stability for hours. Any cold spot in the room could also cause convection which might change the optical path by fraction of a micron. Most of the instruments are operating at cryogenic temperatures using passive cooling based on LN2 bath cryostat. For this reason, dedicated strategy has been developed for the transfer of LN2 to the various instruments. The present document describes the various aspects and care taken in order to guarantee the very high thermal and mechanical environmental stability.
机译:ESO VLT(欧洲南部天文台非常大的望远镜)最敏感的观察模式是干涉模式,其中4个单位望远镜被引导到相同的恒星物体,以便作为巨大的干涉仪操作。然后将光束重新组合在主要干涉测量实验室中并进入分析仪器。为了不打扰干涉仪的性能,这个房间被认为是一个避难所,只有在极度需要的情况下进入。门的简单开口会产生影响小时稳定的空气湍流。房间中的任何冷点也可能导致对流,这可能会通过微米的分数改变光路。大多数仪器在低温温度下使用基于LN2浴槽裂解器的无源冷却在低温温度下运行。因此,已经开发了专用策略用于将LN2转移到各种仪器。本文件描述了采取的各个方面和护理,以保证非常高的热和机械环境稳定性。

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