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Science opportunities with the near-IR camera (NIRCam) on the James Webb Space Telescope (JWST)

机译:詹姆斯·韦伯太空望远镜(JWST)上的近红外摄像机(NIRCam)带来的科学机会

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摘要

The Near-Infrared Camera (NIRCam) on the James Webb Space Telescope (JWST) offers revolutionary gains in sensitivity throughout the 1-5 μm region. NIRCam will enable great advances in all areas of astrophysics, from the composition of objects in our own Kuiper Belt and the physical properties of planets orbiting nearby stars to the formation of stars and the detection of the youngest galaxies in the Universe. NIRCam also plays an important role in initial alignment of JWST and the long term maintenance of its image quality. NIRCam is presently undergoing instrument Integration and Test in preparation for delivery to the JWST project. Key near-term milestones include the completion of cryogenic testing of the entire instrument; demonstration of scientific and wavefront sensing performance requirements; testing of replacement H2RG detectors arrays; and an analysis of coronagraphic performance in light of measured telescope wavefront characteristics. This paper summarizes the performance of NIRCam, the scientific and education/outreach goals of the science team, and some results of the on-going testing program.
机译:詹姆士·韦伯太空望远镜(JWST)上的近红外摄像机(NIRCam)在整个1-5μm范围内提供了革命性的灵敏度提高。 NIRCam将在天体物理学的所有领域取得巨大进步,从我们自己的柯伊伯带中的天体组成,绕着附近恒星运行的行星的物理特性到恒星的形成以及宇宙中最年轻的星系的探测。 NIRCam在JWST的初始对齐以及其图像质量的长期维护中也起着重要作用。 NIRCam目前正在进行仪器集成和测试,以准备交付给JWST项目。近期的重要里程碑包括完成整个仪器的低温测试;演示科学和波前感测性能要求;测试替换的H2RG探测器阵列;根据测得的望远镜波前特性对日冕性能进行分析。本文总结了NIRCam的性能,科学团队的科学和教育/推广目标以及正在进行的测试计划的一些结果。

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