论文标题
天气项目:科学技术的当前进展
The TianQin project: current progress on science and technology
论文作者
论文摘要
天气是计划的基于空间的重力波(GW)天文台,由三个地球轨道卫星组成,轨道半径约为$ 10^5〜 {\ rm km} $。卫星将形成一个等边三角形星座,其平面几乎垂直于黄道平面。 TianQin aims to detect GWs between $10^{-4}~{\rm Hz}$ and $1~{\rm Hz}$ that can be generated by a wide variety of important astrophysical and cosmological sources, including the inspiral of Galactic ultra-compact binaries, the inspiral of stellar-mass black hole binaries, extreme mass ratio inspirals, the merger of massive黑洞二进制文件,以及早期宇宙或外来源(例如宇宙弦)中的充满活力的过程。为了在2035年左右开始科学运营,一个名为0123计划的路线图被用来将天气的关键技术带到成熟,并在现场建立了一系列研究设施的支持下。 0123计划的两个主要项目正在进行中。在此过程中,该团队创建了一个新一代$ 17〜 {\ rm cm} $单体空心角式复古反射器,该回火已于2018年5月21日与Queqiao Satellite推出;已经构建了一个新的激光电台,配备了$ 1.2〜 {\ rm m} $望远镜,并且该站已成功地范围为月球上的所有五个重新反射器;天然气1实验卫星已于2019年12月20日推出,第一轮结果表明该卫星已超出其所有任务要求。
TianQin is a planned space-based gravitational wave (GW) observatory consisting of three earth orbiting satellites with an orbital radius of about $10^5~{\rm km}$. The satellites will form a equilateral triangle constellation the plane of which is nearly perpendicular to the ecliptic plane. TianQin aims to detect GWs between $10^{-4}~{\rm Hz}$ and $1~{\rm Hz}$ that can be generated by a wide variety of important astrophysical and cosmological sources, including the inspiral of Galactic ultra-compact binaries, the inspiral of stellar-mass black hole binaries, extreme mass ratio inspirals, the merger of massive black hole binaries, and possibly the energetic processes in the very early universe or exotic sources such as cosmic strings. In order to start science operations around 2035, a roadmap called the 0123 plan is being used to bring the key technologies of TianQin to maturity, supported by the construction of a series of research facilities on the ground. Two major projects of the 0123 plan are being carried out. In this process, the team has created a new generation $17~{\rm cm}$ single-body hollow corner-cube retro-reflector which has been launched with the QueQiao satellite on 21 May 2018; a new laser ranging station equipped with a $1.2~{\rm m}$ telescope has been constructed and the station has successfully ranged to all the five retro-reflectors on the Moon; and the TianQin-1 experimental satellite has been launched on 20 December 2019 and the first round result shows that the satellite has exceeded all of its mission requirements.