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Frequency multiplexed superconducting quantum interference device readout of large bolometer arrays for cosmic microwave background measurements

机译:大型辐射热计阵列的频率复用超导量子干扰设备读数,用于宇宙微波背景测量

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摘要

A technological milestone for experiments employing transition edge sensor bolometers operating at sub-Kelvin temperature is the deployment of detector arrays with 100s–1000s of bolometers. One key technology for such arrays is readout multiplexing: the ability to read out many sensors simultaneously on the same set of wires. This paper describes a frequency-domain multiplexed readout system which has been developed for and deployed on the APEX-SZ and South Pole Telescope millimeter wavelength receivers. In this system, the detector array is divided into modules of seven detectors, and each bolometer within the module is biased with a unique ∼MHz sinusoidal carrier such that the individual bolometer signals are well separated in frequency space. The currents from all bolometers in a module are summed together and pre-amplified with superconducting quantum interference devices operating at 4 K. Room temperature electronics demodulate the carriers to recover the bolometer signals, which are digitized separately and stored to disk. This readout system contributes little noise relative to the detectors themselves, is remarkably insensitive to unwanted microphonic excitations, and provides a technology pathway to multiplexing larger numbers of sensors.
机译:使用在低于开尔文温度下运行的过渡边缘传感器测辐射热计进行实验的技术里程碑是部署具有100s–1000s测辐射热计的检测器阵列。这种阵列的一项关键技术是读取多路复用:能够在同一组电线上同时读取许多传感器。本文介绍了一种频域多路复用读出系统,该系统已为APEX-SZ和南极望远镜毫米波波长接收器开发并部署。在该系统中,检测器阵列被分成七个检测器的模块,模块中的每个辐射热测量计都被一个独特的〜MHz正弦波偏置,从而使各个辐射热测量计信号在频率空间中得到很好的分离。来自模块中所有辐射热测量计的电流加在一起,并以工作在4 K的超导量子干扰设备进行预放大。室温电子器件对载波进行解调,以恢复辐射热测量计信号,信号被单独数字化并存储到磁盘。该读出系统相对于检测器本身贡献的噪声很小,对不需要的微音激发非常不敏感,并提供了多路复用大量传感器的技术途径。

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