Wang N, Hunter T R, Benford D J, Serabyn E, Lis D C, Phillips T G, Moseley S H, Boyce K, Szymkowiak A, Allen C, Mott B, Gygax J
Appl Opt. 1996 Dec 1;35(34):6629-40. doi: 10.1364/AO.35.006629.
We constructed a 24-pixel bolometer camera operating in the 350- and 450-μm atmospheric windows for the Caltech Submillimeter Observatory (CSO). This instrument uses a monolithic silicon bolometer array that is cooled to approximately 300 mK by a single-shot (3)He refrigerator. First-stage amplification is provided by field-effect transistors at approximately 130 K. The sky is imaged onto the bolometer array by means of several mirrors outside the Dewar and a cold off-axis elliptical mirror inside the cryostat. The beam is defined by cold aperture and field stops, which eliminates the need for any condensing horns. We describe the instrument, present measurements of the physical properties of the bolometer array, describe the performance of the electronics and the data-acquisition system, and demonstrate the sensitivity of the instrument operating at the observatory. Approximate detector noise at 350 μm is 5 × 10(-15) W/√Hz, referenced to the entrance of the Dewar, and the CSO system noise-equivalent flux density is approximately 4 Jy/√Hz. These values are within a factor of 2.5 of the background limit.
我们为加州理工学院亚毫米波天文台(CSO)构建了一台工作在350微米和450微米大气窗口的24像素测辐射热计相机。该仪器使用一个单片硅测辐射热计阵列,通过单次(3)He制冷机冷却至约300 mK。第一级放大由约130 K的场效应晶体管提供。天空通过杜瓦瓶外的几个镜子和低温恒温器内的冷离轴椭圆镜成像到测辐射热计阵列上。光束由冷孔径和视场光阑定义,这消除了对任何聚光喇叭的需求。我们描述了该仪器,给出了测辐射热计阵列物理特性的测量结果,描述了电子学和数据采集系统的性能,并展示了该仪器在天文台运行时的灵敏度。在350微米处,以杜瓦瓶入口为参考,探测器的近似噪声为5×10^(-15) W/√Hz,CSO系统的噪声等效通量密度约为4 Jy/√Hz。这些值在背景极限的2.5倍以内。