论文标题
CCAT-PRIME:电离光谱仪时期的光学设计
CCAT-prime: The Optical Design for the Epoch of Reionization Spectrometer
论文作者
论文摘要
电离光谱仪(EOR-SPEC)的时期将是CCAT-PRIME协作的Fred Young Ingimmimmeter望远镜(FYST)的量子板接收器的仪器模块,这是6米的主镜交叉的Dragone望远镜。 EOR-Spec凭借其Fabry-Perot干涉仪(FPI),将逐步介绍210至420 GHz之间的频率,以执行158 $ $ m [CII]线的线强度映射,以在3.5和8之间的星形星系聚集体中进行3.5和8之间的星形星系,以追踪在Recoch ecoch epoch epoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch e recoch ecoch ecoch ecoch e recoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch ecoch的演化。在这里,我们介绍模块的光学设计,包括对图像表面的光学质量和其他关键参数的研究。为了使用FPI实现所需的分辨能力(R $ \ sim $ 100),在系统的Lyot停止处拥有高度准直的光束很重要。概述了使用四个镜头实现此目标的优化过程,而不是其他Prime-Cam模块中使用的三个镜头。作为优化的一部分,我们测试了在这种交叉的Dragone设计中用双丝镜代替某些非球形镜头的效果,并发现双形镜头倾向于改善模块焦平面上的图像质量。
The Epoch of Reionization Spectrometer (EoR-Spec) will be an instrument module for the Prime-Cam receiver on the CCAT-prime Collaboration's Fred Young Submillimeter Telescope (FYST), a 6-m primary mirror Crossed Dragone telescope. With its Fabry-Perot interferometer (FPI), EoR-Spec will step through frequencies between 210 and 420 GHz to perform line intensity mapping of the 158 $μ$m [CII] line in aggregates of star-forming galaxies between redshifts of 3.5 and 8 to trace the evolution of structure in the universe during the epoch of reionization. Here we present the optical design of the module including studies of the optical quality and other key parameters at the image surface. In order to achieve the required resolving power (R$\sim$100) with the FPI, it is important to have a highly collimated beam at the Lyot stop of the system; the optimization process to achieve this goal with four lenses instead of three as used in other Prime-Cam modules is outlined. As part of the optimization, we test the effect of replacing some of the aspheric lenses with biconic lenses in this Crossed Dragone design and find that the biconic lenses tend to improve the image quality across the focal plane of the module.