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ESPRIT - A space interferometer concept for the far-infrared

机译:ESPRIT-用于远红外的空间干涉仪概念

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In the far-infrared (FIR) / THz regime the angular (and often spectral) resolution of observing facilities is still very restricted despite the fact that this frequency range has become of prime importance for modern astrophysics. ALMA (Atacama Large Millimeter Array) with its superb sensitivity and angular resolution will only cover frequencies up to about 1 THz, while the HIFI instrument for ESA'a Herschel Space Observatory will provide limited angular resolution (10 to 30 arcsec) up to 2 THz. Observations of regions with star and planet formation require extremely high angular resolution as well as frequency resolution in the full THz regime. In order to open these regions for high-resolution astrophysics we propose a heterodyne space interferometer mission, ESPRIT (Exploratory Submm Space Radio-Interferometric Telescope), for the Terahertz regime inaccessible from ground and outside the operating range of the James Webb Space Telescope (JWST).
机译:在远红外(TIR / THz)体制中,尽管观测频率的角度(以及通常是频谱)分辨率对于现代天体物理学而言已变得极为重要,但其分辨率仍然受到很大限制。具有出色灵敏度和角分辨率的ALMA(阿塔卡马大毫米波阵列)将仅覆盖高达1 THz的频率,而用于ESA's Herschel太空天文台的HIFI仪器将提供有限的角分辨率(10至30 arcsec),高达2 THz 。观测具有恒星和行星形成区域的区域需要极高的角分辨率以及在整个太赫兹范围内的频率分辨率。为了为高分辨率的天体物理学打开这些区域,我们提出了一种外差式太空干涉仪任务ESPRIT(探索性亚毫米空间射电干涉望远镜),用于从地面和詹姆斯·韦伯太空望远镜(JWST)的工作范围之外无法接近的太赫兹政权)。

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