论文标题
低温大量强度映射实验的光学设计(Amaim)
Optical Design of the EXperiment for Cryogenic Large-Aperture Intensity Mapping (EXCLAIM)
论文作者
论文摘要
这项工作描述了光学的设计和实现,即低温大量强度映射的实验。 Apaim是一种气球传播的望远镜,将在RedShifts $ Z <1 $和RedShifts $ Z = 2.5-3.5 $的Redshifts $ Z <1 $和离子化的碳([CII])上衡量的集成生产线排放。该宣称的仪器旨在使用六个具有光谱分辨力的六个微型硅集成光谱仪以$ 420 $ - $ 540 $ GHz观察观察,$ r = 512 $耦合到动力电感探测器(儿童)。完全冷冻的望远镜冷却至低于5〜k的温度,可以在平流层中狭窄的大气线之间进行低背景观测。外轴反射光学元件使用$ 90 $ -cm的主镜,以$ 4.2^\ Prime $ $ $ $ $ $ $ $ $ $ $ $全宽,以$ 22.5^\ prime $的视野,以$ 2-MAXimim(FWHM)的分辨率(FWHM)分辨率。 $ 1.7 $ k冷站的照明与光学系统中多个位置上的黑色挡板相结合,可确保初级的低($ <-40 $ dB)边缘照明,以最大程度地减少脱水顶部的温暖元素的溢出。
This work describes the design and implementation of optics for EXCLAIM, the EXperiment for Cryogenic Large-Aperture Intensity Mapping. EXCLAIM is a balloon-borne telescope that will measure integrated line emission from carbon monoxide (CO) at redshifts $z<1$ and ionized carbon ([CII]) at redshifts $z = 2.5-3.5$ to probe star formation over cosmic time in cross-correlation with galaxy redshift surveys. The EXCLAIM instrument is designed to observe at frequencies of $420$--$540$ GHz using six microfabricated silicon integrated spectrometers with spectral resolving power $R = 512$ coupled to kinetic inductance detectors (KIDs). A completely cryogenic telescope cooled to a temperature below 5~K provides low-background observations between narrow atmospheric lines in the stratosphere. Off-axis reflective optics use a $90$-cm primary mirror to provide $4.2^\prime$ full-width at half-maximum (FWHM) resolution at the center of the EXCLAIM band over a field of view of $22.5^\prime$. Illumination of the $1.7$ K cold stop combined with blackened baffling at multiple places in the optical system ensure low ($< -40$ dB) edge illumination of the primary to minimize spill onto warmer elements at the top of the dewar.