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首页> 外文期刊>Journal of Low Temperature Physics >Developing a Large-Scale Cryogenic System for the Simultaneous Operation of Three Detector Focal Planes in TolTEC, A New Multichroic Imaging Polarimeter
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Developing a Large-Scale Cryogenic System for the Simultaneous Operation of Three Detector Focal Planes in TolTEC, A New Multichroic Imaging Polarimeter

机译:开发大规模低温系统,用于在Toltec中同时运行三个探测器焦平面,这是一种新的兼彩兼彩色成像偏振仪

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摘要

TolTEC is an upcoming millimeter-wave imaging polarimeter designed to fill the focal plane of the 50-m-diameter Large Millimeter Telescope (LMT). Combined with the LMT, TolTEC will offer high-angular-resolution (5"-10") simultaneous, polarization-sensitive observations in three wavelength bands: 1.1, 1.4, and 2.0 mm. Additionally, TolTEC will feature mapping speeds greater than 2deg~2/mJy~2/h, thus enabling wider surveys of large-scale structure, galaxy evolution, and star formation. These improvements are only possible through the integration of approximately 7000 low-noise, high-responsivity superconducting Lumped Element Kinetic Inductance Detectors. Utilizing three focal planes of detector arrays requires the design, fabrication, and characterization of a unique, large-scale cryogenic system. Based on thermal models and expected photon loading, the focal planes must have a base operational temperature below 150 mK. To achieve this base temperature, TolTEC utilizes two cryocoolers, a Cryomech pulse tube cooler and an Oxford Instruments dilution refrigerator, to establish four thermal stages: 45 K, 4 K, 1 K, and 100 mK. During the design phase, we developed an object-oriented Python code to model the heat loading on each stage as well as the thermal gradients throughout the system. This model has allowed us to improve thermal gradients in the system as well as locate areas of poor thermal conductivity prior to ending a cooldown. The results of our model versus measurements from our cooldowns will be presented along with a detailed overview of TolTEC's cryogenic system. We anticipate TolTEC to be commissioned at the LMT by Spring 2020.
机译:TolTEC是一款即将推出的毫米波成像偏振仪,用于填充直径为50米的大型毫米波望远镜(LMT)的焦平面。与LMT相结合,TolTEC将在三个波长段提供高角度分辨率(5“-10”)的同时偏振敏感观测:1.1、1.4和2.0毫米。此外,托尔特克的测绘速度将超过2deg~2/mJy~2/h,从而能够更广泛地调查大尺度结构、星系演化和恒星形成。这些改进只有通过集成大约7000个低噪声、高响应度的超导集总元件动态电感探测器才能实现。利用探测器阵列的三个焦平面需要设计、制造和表征一个独特的大规模低温系统。根据热模型和预期的光子负载,焦平面的基本工作温度必须低于150 mK。为了达到该基本温度,托尔泰克公司使用了两台制冷机,一台Cryomech脉冲管制冷机和一台Oxford Instruments稀释制冷机,以建立四个热级:45 K、4 K、1 K和100 mK。在设计阶段,我们开发了一个面向对象的Python代码来模拟每个阶段的热负荷以及整个系统的热梯度。该模型使我们能够改善系统中的热梯度,并在结束冷却之前定位导热性差的区域。我们的模型与冷却测量的结果将与TolTEC低温系统的详细概述一起呈现。我们预计托尔泰克将于2020年春季在LMT投入使用。

著录项

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  • 作者单位

    Department of Astronomy University of Massachusetts Amherst MA 01002 USA;

    Department of Astronomy University of Massachusetts Amherst MA 01002 USA;

    Department of Astronomy University of Massachusetts Amherst MA 01002 USA;

    School of Earth and Space Exploration Arizona State University Tempe AZ 85281 USA;

    School of Earth and Space Exploration Arizona State University Tempe AZ 85281 USA;

    Department of Astronomy University of Massachusetts Amherst MA 01002 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 低温物理学;
  • 关键词

    TolTEC; Cryogenics; KIDs;

    机译:None;

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