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Instrumentation for Millimetron - a large space antenna for THz astronomy

机译:Millimetron的仪器-用于太赫兹天文学的大型空间天线

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Millimetron is a Russian-led 12m diameter submillimeter and far-infrared space observatory which is included in the Space Plan of the Russian Federation and funded for launch after 2015. With its large collecting area and state-of-the-art receivers, it will enable unique science and allow at least one order of magnitude improvement with respect to the Herschel Space Observatory. Millimetron is currently in a conceptual design phase carried out by the Astro Space Center in Moscow and SRON Netherlands Institute for Space Research. It will use a passively cooled deployable antenna with a high-precision central 3.5m diameter mirror and high-precision antenna petals. The antenna is specified for observations up to ~2 THz over the whole 12m diameter, and to higher frequencies using the central 3.5m solid mirror. Millimetron will be operated in two basic observing modes: as a single-dish observatory, and as an element of a ground-space VLBI system. As single-dish, angular resolutions on the order of 3 to 12 arcsec will be achieved and spectral resolutions of up to 10~6 employing heterodyne techniques. As VLBI antenna, the chosen elliptical orbit will provide extremely large VLBI baselines resulting in micro-arcsec angular resolution. The scientific payload will consist of heterodyne and direct detection instruments covering the most important sub-/millimeter spectral regions (including some ALMA bands) and will build on the Herschel and ALMA heritage.
机译:Millimetron是俄罗斯领导的直径为12m的亚毫米和远红外太空天文台,已纳入俄罗斯联邦太空计划,并于2015年后投入发射。凭借其庞大的采集面积和最先进的接收器,它将与赫歇尔太空天文台相比,可以实现独特的科学并至少提高一个数量级。 Millimetron目前处于概念设计阶段,由莫斯科的Astro航天中心和SRON荷兰空间研究所进行。它将使用被动冷却的可展开天线,该天线具有高精度中央3.5m直径镜面和高精度天线瓣。该天线被指定用于在整个12m直径范围内最高〜2 THz的观测,并使用中央3.5m固体镜观测更高的频率。 Millimetron将以两种基本的观测模式进行操作:作为单碟观测器,以及作为地面空间VLBI系统的组成部分。作为单碟,采用外差技术可实现3至12 arcsec量级的角分辨率,光谱分辨率最高可达10至6。作为VLBI天线,所选的椭圆轨道将提供非常大的VLBI基线,从而产生微弧角分辨率。科学有效载荷将由覆盖最重要的亚/毫米谱区域(包括某些ALMA波段)的外差和直接探测仪器组成,并将建立在Herschel和ALMA的基础上。

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