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Focal Plane Instruments onboard SPICA

机译:SPICA上的焦平面仪器

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摘要

The SPICA, Japanese next generation infrared space telescope with a cooled 3.5 m primary mirror, will be a quite unique observatory in the mid and far-infrared with unprecedented sensitivity and the spatial resolving power. Here we briefly describe the key scientific objectives which can be performed only with SPICA, based on its unique design concepts. We then describe the scientific requirements for the focal plane instruments, and summarize the constraints on the various resources available for the focal plane instruments, derived from the spacecraft system design. We also outline the concept of the planned focal plane instruments, and the future development plan. Within the focal-plane instrument space (2.5m diameter, 0.5m height), two major instruments are so far planned to be equipped: one is a mid-infrared instrument, consisting of a mid-infrared camera, mid-infrared spectrometers, and a mid-infrared coronagraph, while the another is a far-infrared camera and spectrometer. The mid-infrared camera will consist of four channels covering 5-38 μm with approximately 25-40 square arcminutes, while the mid-infrared spectrometer will have high-dispersion (R=30000) channels at 4-18 μm and moderate-dispersion (R=3000) channels at 16-38 um. The mid-infrared coronagraph will have both imaging and spectroscopic capability at 5-27 μm, with the contrast higher than 10~(-6). As for the far-infrared camera and spectrometer, a Fourier-type imaging spectrometer covering 30-210 μm is proposed and extensively studied by the European consortium (SAFARI consortium). A far-infrared and sub-millimeter grating spectrometer instrument is also under consideration by the US SPICA team.
机译:SPICA是具有冷却后的3.5 m主镜的日本下一代红外太空望远镜,它将是中远红外非常独特的观测站,具有空前的灵敏度和空间分辨能力。在这里,我们基于其独特的设计概念,简要描述了只有SPICA才能实现的关键科学目标。然后,我们描述了对焦平面仪器的科学要求,并总结了从航天器系统设计中得出的对焦平面仪器可用的各种资源的限制。我们还概述了计划中的焦平面仪器的概念以及未来的发展计划。到目前为止,在焦平面仪器空间(直径2.5m,高度0.5m)中,计划安装两台主要仪器:一台是中红外仪器,由一台中红外照相机,一台中红外光谱仪和一台红外仪器组成。一个中红外日冕仪,另一个是远红外相机和光谱仪。中红外摄像头将由覆盖5-38μm的四个通道组成,大约25-40平方弧分,而中红外光谱仪将具有4-18μm的高色散(R = 30000)通道和中等色散(R = 30000)。 R = 3000)的通道在16-38 um。中红外日冕仪在5-27μm范围内具有成像和光谱功能,对比度高于10〜(-6)。对于远红外照相机和光谱仪,提出了一种覆盖30-210μm的傅立叶型成像光谱仪,并由欧洲财团(SAFARI财团)进行了广泛的研究。美国SPICA团队也正在考虑一种远红外和亚毫米光栅光谱仪。

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