中文

Vera C. Rubin 天文台 M2 遮光罩散射光产生的弥散背景建模

天体物理仪器与方法 2026-06-30 v1

摘要

Vera C. Rubin 天文台凭借其前所未有的视场和快焦比,将每 3.5 个夜晚巡天一次。这种独特的能力需要处理可能导致图像杂散光伪影的离轴光。次镜(M2)遮光罩限制了到达 LSSTCam 探测器的光,并有助于塑造望远镜光学光瞳的内边缘。本工作研究了 M2 遮光罩自身散射光对背景的贡献。由于该特征的微弱性,加上将其与天空背景隔离的挑战,导致有必要使用通常用于校准目的的准直光束投影仪(CBP)进行圆顶内测试。为了完成分析,除了圆顶内测试外,还开展了在天空观测活动。该活动采用恒星目标和月球作为照明源,以确定与该特征相关的实际能量。通过结合光线追踪模拟、CBP 和在天空数据,对测试数据进行了拟合,以推断不同 LSSTCam 滤光片下背景散射光的强度和空间分布。我们量化了 M2 遮光罩散射光在天空上的影响,包括来自明亮红星和来自月球的光。我们还开发了一种近似关系,将圆顶内测量转换为在天空行为的预测。这种转换是通过比较离轴恒星产生的照明足迹与 CBP 产生的照明足迹,并将恒星光谱能量分布(SED)映射到 CBP 的离散波长集来实现的。最后,我们将月球的散射光行为外推至恒星源,以构建在整个星等范围内对 M2 遮光罩贡献的完整描述。

关键词

引用

@article{arxiv.2606.31793,
  title  = {Modeling of the diffuse background produced by the Vera C. Rubin Observatory M2 baffle scattered light},
  author = {Alessio Taranto and Gabriele Rodeghiero and Luca Rosignoli and Aashay Pai and Alex Drlica Wagner and Elana K. Urbach and Fritz Muller and Eli S. Rykoff and Hannah M. M. Pollek and John Andrew and Douglas R. Neill and Parker Fragelius and Tomislav Vucina and Christopher W. Stubbs and Robert H. Lupton and Lee S. Kelvin and Kate Napier and Jacqueline Seron Navarrete and Travis Lange and Andrew P. Rasmussen and Aaron Roodman and Chuck F. Claver and Joshua E. Meyers and Anastasia Alexov and Keith Bechtol and Brian Stalder and R. Lynne Jones and Leanne P. Guy and Tiago Ribeiro and Erik Dennihy and Bruno C. Quint and Aaron E. Watkins and Alysha B. Shugart and Lukas Eisert and Kevin Fanning and Marina S. Pavlovich and Yijung Kang and Hye Yun Park and Paulo Lago and Kris Mortensen and Paulina Venegas Salas and Minhee Hyun and Karla Pena Ramirez and David Sanmartim and Qianjun Hang and Gonzalo Aravena and Kshitija Kelkar and Carlos A. L. Morales Marin and Danica Zilkova and Eric J. Christensen and Yusra Alsayyad and William O'Mullane and Enrico Giro and Rodolfo Canestrari and Sandrine J. Thomas and Kevin A. Reil and Claudio H. Araya Cortes and Roberto Tighe and Holger Drass and Pablo Zorzi and Massimo Brescia},
  journal= {arXiv preprint arXiv:2606.31793},
  year   = {2026}
}

备注

21 pages, 10 figures, submitted to SPIE Astronomical Telescopes + Instrumentation 2026