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Assembly, characterization, and operation of large-scale TES detector arrays for ACTPol.

机译:ACTPol的大型TES检测器阵列的组装,表征和操作。

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摘要

The Polarization-sensitive Receiver for the Atacama Cosmology Telescope (ACTPol) is designed to measure the Cosmic Microwave Background (CMB) temperature and polarization anisotropies on small angular scales. Measurements of the CMB temperature and polarization anisotropies have produced arguably the most important cosmological data to date, establishing the LambdaCDM model and providing the best constraints on most of its parameters. To detect the very small fluctuations in the CMB signal across the sky, ACTPol uses feedhorn-coupled Transition-Edge Sensor (TES) detectors. A TES is a superconducting thin film operated in the transition region between the superconducting and normal states, where it functions as a highly sensitive resistive thermometer. In this thesis, aspects of the assembly, characterization, and in-field operation of the ACTPol TES detector arrays are discussed. First, a novel microfabrication process for producing high-density superconducting aluminum/polyimide flexible circuitry (flex) designed to connect large-scale detector arrays to the first stage of readout is presented. The flex is used in parts of the third ACTPol array and is currently being produced for use in the AdvACT detector arrays, which will begin to replace the ACTPol arrays in 2016. Next, we describe methods and results for the in-lab and on-telescope characterization of the detectors in the third ACTPol array. Finally, we describe the ACTPol TES R(T,I) transition shapes and how they affect the detector calibration and operation. Methods for measuring the exact detector calibration and re-biasing functions, taking into account the R(T,I) transition shape, are presented.
机译:阿塔卡马宇宙望远镜的偏振敏感接收器(ACTPol)设计用于在小角度范围内测量宇宙微波背景(CMB)温度和偏振各向异性。 CMB温度和极化各向异性的测量可以说是迄今为止最重要的宇宙学数据,它建立了LambdaCDM模型,并为大多数参数提供了最佳约束。为了检测整个天空中CMB信号中很小的波动,ACTPol使用了馈电喇叭耦合的过渡边缘传感器(TES)检测器。 TES是在超导状态和正常状态之间的过渡区域中操作的超导薄膜,在该膜中,它用作高灵敏度的电阻温度计。本文讨论了ACTPol TES检测器阵列的组装,表征和现场操作的各个方面。首先,提出了一种新颖的微细加工工艺,用于生产高密度超导铝/聚酰亚胺柔性电路(flex),该电路设计用于将大型探测器阵列连接到读数的第一阶段。该flex用于第三批ACTPol阵列的一部分,目前正在生产中,用于AdvACT检测器阵列,该阵列将在2016年开始取代ACTPol阵列。接下来,我们介绍实验室和在线实验的方法和结果。第三个ACTPol阵列中探测器的望远镜特性。最后,我们描述了ACTPol TES R(T,I)过渡形状以及它们如何影响检测器的校准和操作。提出了考虑R(T,I)过渡形状的精确检测器校准和重新偏置功能的测量方法。

著录项

  • 作者

    Pappas, Christine Goodwin.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Astronomy.;Electrical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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