论文标题
推荐的高性能望远镜系统设计
Recommended high performance telescope system design for the TianQin project
论文作者
论文摘要
中国计划建造一种新的太空传播引力波(GW)天文台,即天气项目,其中太空寄生望远镜是激光干扰法的重要组成部分。望远镜的目的是在航天器之间传输激光束,以测量长臂验证量之间的位移。望远镜应具有超小的波前偏差,以最大程度地减少指向误差,超稳定结构引起的噪声,以最大程度地减少由温度抖动引起的光路噪声,超高的流浪光抑制能力消除背景噪声。在本文中,我们实现了一种具有超稳定结构的望远镜系统设计,以及用于空间GW检测任务的超低波前失真。设计要求需要极大控制高图像质量和非凡的流浪抑制能力。基于主要的畸变理论,探索了上述四元光学系统的初始结构设计。优化后,在整个视野(FOV)上,最大RMS波前误差小于LAMDA/300,该误差(FOV)符合望远镜设计上的噪声预算。还分析了望远镜的背面反射引起的杂散噪声。光学台位位置的噪声小于发射功率的10-10,满足了空间重力波检测的要求。我们认为,我们的设计可以成为天气项目的好候选人,并且也可以成为任何其他类似科学项目中太空望远镜设计的好指南。
China is planning to construct a new space-borne gravitational-wave (GW) observatory, the TianQin project, in which the spaceborne telescope is an important component in laser interferometry. The telescope is aimed to transmit laser beams between the spacecrafts for the measurement of the displacements between proof-masses in long arms. The telescope should have ultra-small wavefront deviation to minimize noise caused by pointing error, ultra-stable structure to minimize optical path noise caused by temperature jitter, ultra-high stray light suppression ability to eliminate background noise. In this paper, we realize a telescope system design with ultra-stable structure as well as ultra-low wavefront distortion for the space-based GW detection mission. The design requirements demand extreme control of high image quality and extraordinary stray light suppression ability. Based on the primary aberration theory, the initial structure design of the mentioned four-mirror optical system is explored. After optimization, the maximum RMS wavefront error is less than lamda/300 over the full field of view (FOV), which meets the noise budget on the telescope design. The stray light noise caused by the back reflection of the telescope is also analyzed. The noise at the position of optical bench is less than 10-10 of the transmitted power, satisfying the requirements of space gravitational-wave detection. We believe that our design can be a good candidate for TianQin project, and can also be a good guide for the space telescope design in any other similar science project.