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The E and B EXperiment: Implementation and Analysis of the 2009 Engineering Flight.

机译:E和B实验:2009年工程飞行的实施和分析。

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摘要

The E and B EXperiment (EBEX) is a balloon-borne telescope designed to map the polarization of the cosmic microwave background (CMB) and emission from galactic dust at millimeter wavelengths from 150 to 410 GHz. The primary science objectives of EBEX are to: detect or constrain the primordial B-mode polarization of the CMB predicted by inflationary cosmology; measure the CMB B-mode signal induced by gravitational lensing; and characterize the polarized thermal emission from interstellar dust. EBEX will observe a 420 square degree patch of the sky at high galactic latitude with a telescope and camera that provide an 8 arcminute beam at three observing bands (150, 250, and 410 GHz) and a 6.2 degree diffraction limited field of view to two large-format bolometer array focal planes. Polarimetry is achieved via a continuously rotating half-wave plate (HWP), and the optical system is designed from the ground up for control of sidelobe response and polarization systematic errors.;EBEX is intended to execute fly or more Antarctic long duration balloon campaigns. In June 2009 EBEX completed a North American engineering flight launched from NASA's Columbia Scientific Ballooning Facility (CSBF) in Ft. Sumner, NM and operated in the stratosphere above 30 km altitude for ∼10 hours.;During flight EBEX must be largely autonomous as it conducts pointed, scheduled observations; tunes and operates 1432 TES bolometers via 28 embedded Digital frequency-domain multiplexing (DfMux) computers; logs over 3 GiB/hour of science and housekeeping data to onboard redundant disk storage arrays; manages and dispatches jobs over a fault-tolerant onboard Ethernet network; and feeds a complex real-time data processing infrastructure on the ground via satellite and line-of-sight (LOS) downlinks.;In this thesis we review the EBEX instrument, present the optical design and the computational architecture for in-flight control and data handling, and the quick-look software stack. Finally we describe the 2009 North American test flight and present analysis of data collected at the end of that flight that characterizes scan-synchronous signals and the expected response to emission from thermal dust in our galaxy.
机译:E和B实验(EBEX)是一种气球式望远镜,旨在绘制宇宙微波背景(CMB)的极化和银河尘埃在150至410 GHz毫米波长的发射。 EBEX的主要科学目标是:检测或约束通货膨胀宇宙学预测的CMB的原始B型极化;测量引力透镜引起的CMB B模式信号;并表征星际尘埃的极化热辐射。 EBEX将使用望远镜和照相机在高银河纬度下观察420平方度的天空斑块,该望远镜和照相机将在三个观察频带(150、250和410 GHz)上提供8 arcminute光束,并在6.2倍的衍射范围内大型辐射热计阵列焦平面。偏振是通过连续旋转的半波片(HWP)实现的,光学系统是从头开始设计的,用于控制旁瓣响应和偏振系统误差。EBEX用于执行飞行或更长时间的南极气球运动。在2009年6月,EBEX完成了从美国国家航空航天局(NASA)的哥伦比亚科学气球研究中心(CSBF)发射的北美工程飞行。新墨西哥州萨姆纳(Sumner),在30公里高空的平流层中运行约10个小时。通过28台嵌入式数字频域复用(DfMux)计算机调谐和操作1432 TES辐射热测量计;每小时将超过3 GiB的科学和整理数据记录到板载冗余磁盘存储阵列中;通过容错的板载以太网管理和调度作业;并通过卫星和视线(LOS)下行链路为地面提供了复杂的实时数据处理基础结构。本文对EBEX仪器进行了综述,介绍了用于飞行中控制的光学设计和计算架构,以及数据处理和快速查看软件堆栈。最后,我们描述了2009年的北美试飞,并对该飞行结束时收集的数据进行了分析,这些数据表征了扫描同步信号以及银河系中热尘埃发射的预期响应。

著录项

  • 作者

    Milligan, Michael Bryce.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Information Technology.;Physics Astrophysics.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 145 p.
  • 总页数 145
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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