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ANTARCTIC OBSERVATIONS AT LONG WAVELENGTHS WITH THE IRAIT-ITM TELESCOPE AT DOME C

机译:在圆顶C的南极观察中的南极观察与IRATIAT-ITM望远镜

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We illustrate the status of the international infra-red telescope IRAIT-ITM, a project developed thanks to an Italian-Spanish-French collaboration and now sited at the Dome C Antarctic base. The telescope and its subsystems were installed at DomeC by a team of Italian and French scientists. The 80 cm telescope is placed on a small snow hill next to a laboratory of astronomy. The operations started in January 2013, with the Nasmyth focal planes equipped with the mid-infrared camera AMICA for 1.25 to 25 μm and the sub-millimetre camera CAMISTIC for observation of the sky noise at 200 and 350 urn using a bolometer camera. During 2013 the two winter-overs worked mainly on technological duties, learning how to operate the telescope, while temperatures decreased down to -80°C. The cryogenic systems could be operated respectively at 0.25K and 4K at all times, with satisfactory use of the heat from the compressors of the cryo-coolers to the warm-up the laboratory through a closed loop glycol system. The lack of tests and reliability in extreme conditions of some components and difficult access to maintenance hampered regular observations below -50°C. Using the lessons of this first winter, the summer team improves the robustness of the failing systems and ease the access to maintenance. The winter 2014 is the first one with programmed observations. Because of power restrictions, the two instruments are used each one at a time by periods of 2 weeks. The Camistic camera continues to observe the stability of the sky at a fixed altitude in chopping mode and performs skydips. The TCS is being upgraded in order to prepare the next summer season with extensive observations of the sun with Camistic.
机译:我们展示了国际红外望远镜Irait-ITM的地位,这是一个由意大利 - 西班牙语 - 法国合作而开发的项目,现在在圆顶C南极基地方面发展。望远镜及其子系统是由意大利和法国科学家团队的Domec安装在Domec。 80厘米望远镜放在天文学实验室旁边的小雪山上。开始在2013年1月的操作,用装有中红外相机AMICA 1.25至25μm,并使用辐射热测量计照相机在200和350瓮亚毫米照相机CAMISTIC用于天空噪声的观测内史密斯焦平面。 2013年,两名冬季主要致力于技术职责,学习如何操作望远镜,而温度下降至-80°C。低温系统可以分别在0.25K和4K始终运行,令人满意地使用来自冷冻机的压缩机的热量通过闭合的环乙二醇系统预热实验室。在某些部件的极端条件下缺乏测试和可靠性,并且难以获得维护的常规观察低于-50°C。使用本第一次冬季的课程,夏季团队提高了故障系统的稳健性,并缓解了维护的访问。 2014年冬天是第一个有程序观测的人。由于功率限制,两种仪器在2周的时间内每次使用。凸轮摄像机继续在斩波模式下观察天空的稳定性,并执行Skydips。 TCS正在升级,以便在下一个夏季准备与沧海的广泛观察。

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