中文

天琴引力波天文学

星系天体物理 2024-12-04 v2 宇宙学与河外天体物理 高能天体物理现象 广义相对论与量子宇宙学

摘要

引力波窗口的开启显著增强了我们探索宇宙最极端和动态领域的能力。在 mHz 频率范围内,来自宇宙最遥远处最巨型黑洞到我们星际后院最轻白矮星的各种致密天体,产生复杂且动态的引力波信号组合。一旦被引力波探测器记录,这些独特的指纹有望解密宇宙结构在广泛尺度范围内的诞生和增长历史,从恒星双星和恒星星团到星系和大尺度结构。天琴空间载人引力波任务计划于 2030 年代发射,运行寿命为五年。它将为我们宇宙历史的关键见解做出贡献。本文件概述了天琴可检测源的概述,阐述了其特征、挑战以及天琴观测器对我们理解这些源的预期影响。

关键词

引用

@article{arxiv.2409.19665,
  title  = {Gravitational Wave Astronomy With TianQin},
  author = {En-Kun Li and Shuai Liu and Alejandro Torres-Orjuela and Xian Chen and Kohei Inayoshi and Long Wang and Yi-Ming Hu and Pau Amaro-Seoane and Abbas Askar and Cosimo Bambi and Pedro R. Capelo and Hong-Yu Chen and Alvin J. K. Chua and Enrique Condés-Breña and Lixin Dai and Debtroy Das and Andrea Derdzinski and Hui-Min Fan and Michiko Fujii and Jie Gao and Mudit Garg and Hongwei Ge and Mirek Giersz and Shun-Jia Huang and Arkadiusz Hypki and Zheng-Cheng Liang and Bin Liu and Dongdong Liu and Miaoxin Liu and Yunqi Liu and Lucio Mayer and Nicola R. Napolitano and Peng Peng and Yong Shao and Swarnim Shashank and Rongfeng Shen and Hiromichi Tagawa and Ataru Tanikawa and Martina Toscani and Verónica Vázquez-Aceves and Hai-Tian Wang and Han Wang and Shu-Xu Yi and Jian-dong Zhang and Xue-Ting Zhang and Lianggui Zhu and Lorenz Zwick and Song Huang and Jianwei Mei and Yan Wang and Yi Xie and Jiajun Zhang and Jun Luo},
  journal= {arXiv preprint arXiv:2409.19665},
  year   = {2024}
}

备注

TianQin Gravitational Wave Whitepaper, 72 pages, 30 figures