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An examination of black hole binaries using X-ray observations and the development of the Bragg reflection polarimeter.

机译:使用X射线观察和Bragg反射偏振仪的发展来检查黑洞二进制。

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摘要

Black hole binaries (BHBs) consist of a black hole which accretes matter from a companion star and emits radiation primarily in the X-ray band. They are known to evolve through various states of emission, which are believed to signify changes in the accretion geometry. MAXI J1659–152 is a recently discovered galactic BHB, and we used Rossi X-ray Timing Explorer (RXTE) observations to investigate its state evolution during its 2010 outburst. This evolution was found to be similar to that of other known BHBs, although its thermal spectral component was relatively weak. The data was also used to estimate the black hole mass to be 3.6–8.0 solar masses. Archival RXTE and Swift data were used to examine another BHB known as GX 339–4 in its faint, hard emission state. This source has a persistent iron line in its spectrum throughout its various emission states, and it is frequently used to estimate the inner radius of its accretion disk. The data were unable to constrain the inner radius through the modeling of the iron line, but estimates based on modeling of the thermal spectral component proved to be consistent with an increase in inner radius at low luminosities.;Theoretical predictions of the soft X-ray polarization of BHBs indicate a change in both angle and magnitude with energy. The details of this change depend on both the spin and mass of the black hole. The NASA Gravity and Extreme Magnetism Small Explorer (GEMS) mission sought to use this effect to measure the spin of BHBs, which is necessary to develop tests of the Kerr metric in general relativity. The Bragg Reflection Polarimeter (BRP) was the student experiment on this mission, and was in the beginning stages of flight fabrication at the time of the mission's cancellation in May 2012. A prototype multilayer reflector meeting nearly all requirements was developed and its performance measured at a synchrotron beamline. Monte-Carlo simulations were carried out to estimate the ultimate polarization sensitivity of the BRP, and indicated satisfaction of the BRP science requirement. Finally, a fully polarized, 511 eV beamline was developed and used to calibrate a BRP instrument prototype, validating the sensitivity predictions.
机译:黑洞双星(BHB)由一个黑洞组成,该黑洞从伴星中吸收物质,并主要在X射线波段发射辐射。已知它们会通过各种发射状态演变,据认为这表明吸积几何形状发生了变化。 MAXI J1659–152是最近发现的银河系BHB,我们使用罗西X射线定时探测器(RXTE)观察了其在2010年爆发期间的状态演变。发现这种演变与其他已知的BHB相似,尽管其热光谱成分相对较弱。该数据还被用来估计黑洞质量为3.6–8.0太阳质量。归档RXTE和Swift数据用于检查另一种微弱,硬发射状态的BHB,即GX 339-4。该源在其各种发射状态下的光谱范围内都有一条持久的铁线,经常被用来估算其吸积盘的内半径。数据无法通过铁线建模来约束内半径,但是基于热谱分量建模的估计被证明与低发光度时内半径的增加是一致的。软X射线的理论预测BHBs的极化表明角度和幅度都随能量而变化。这种变化的细节取决于黑洞的自旋和质量。 NASA重力和极小磁场探索者(GEMS)任务试图利用这种效应来测量BHB的自旋,这对于开发广义相对论中的Kerr度量标准的测试是必不可少的。布拉格反射偏振仪(BRP)是该任务的学生实验,并且在2012年5月任务取消之时正处于飞行制造的初期阶段。研制了一种满足几乎所有要求的多层反射器原型,并在以下时间测量了其性能。同步加速器光束线。进行了蒙特卡洛模拟以估计BRP的最终极化灵敏度,并表明对BRP科学要求的满意。最后,开发了一条全极化的511 eV光束线,并将其用于校准BRP仪器原型,从而验证了灵敏度预测。

著录项

  • 作者

    Allured, Ryan.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Physics Astrophysics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:46

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