中文

起源空间望远镜任务概念研究报告

天体物理仪器与方法 2019-12-24 v2 地球与行星天体物理 星系天体物理

摘要

起源空间望远镜(Origins)追溯我们的宇宙历史,从首批星系的形成和金属的涌现,到宜居世界的产生以及现今生命的出现。Origins 通过对来自离子、原子、分子、尘埃、水蒸气与冰的红外辐射的极高灵敏度观测,以及对系外行星大气、原行星盘和大面积河外星系场的观测来实现这一目标。Origins 工作于 2.8 至 588 微米波长范围,由于其大型低温(4.5 K)望远镜和先进仪器,灵敏度比其前身高 1000 倍。Origins 是社区在 NASA 和工业界支持下为准备 2020 年天体物理学十年调查而研究的四项大型任务之一。本报告为最终研究报告。

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引用

@article{arxiv.1912.06213,
  title  = {Origins Space Telescope Mission Concept Study Report},
  author = {M. Meixner and A. Cooray and D. Leisawitz and J. Staguhn and L. Armus and C. Battersby and J. Bauer and E. Bergin and C. M. Bradford and K. Ennico-Smith and J. Fortney and T. Kataria and G. Melnick and S. Milam and D. Narayanan and D. Padgett and K. Pontoppidan and A. Pope and T. Roellig and K. Sandstrom and K. Stevenson and K. Su and J. Vieira and E. Wright and J. Zmuidzinas and K. Sheth and D. Benford and E. E. Mamajek and S. Neff and E. De Beck and M. Gerin and F. Helmich and I. Sakon and D. Scott and R. Vavrek and M. Wiedner and S. Carey and D. Burgarella and S. H. Moseley and E. Amatucci and R. C. Carter and M. DiPirro and C. Wu and B. Beaman and P. Beltran and J. Bolognese and D. Bradley and J. Corsetti and T. D'Asto and K. Denis and C. Derkacz and C. P. Earle and L. G. Fantano and D. Folta and B. Gavares and J. Generie and L. Hilliard and J. M. Howard and A. Jamil and T. Jamison and C. Lynch and G. Martins and S. Petro and D. Ramspacher and A. Rao and C. Sandin and E. Stoneking and S. Tompkins and C. Webster},
  journal= {arXiv preprint arXiv:1912.06213},
  year   = {2019}
}

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376 pages