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Tidally triggered star formation in gravitationally interacting galaxies and selected work in optical instrumentation.

机译:在引力相互作用的星系中潮汐触发恒星形成,并在光学仪器中选择工作。

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摘要

In the first part of this thesis I present studies of tidally triggered star formation in pairs of gravitationally interacting galaxies. I use spectroscopic and photometric observations of local systems to demonstrate that triggered star formation depends both on intrinsic galaxy properties and on relative properties of the system. Minor galaxy interactions, where the luminosity ratio of the galaxies exceeds about six, produce triggered star formation only in the lower luminosity companion. In interactions between galaxies of similar luminosity, the blue galaxies exhibit tidally triggered star formation, but the red galaxies do not.;I measure the strength, frequency, and timescale of gravitational tidal interactions between galaxy pairs in a complete spectroscopic survey at redshifts 0.08 to 0.38. A third of the galaxies with young stellar populations interacting with a companion of similar luminosity experience enhanced star formation activity. However, the most extreme bursts of triggered star formation are rare and short lived. The typical duration for enhanced star formation in interacting galaxies is of order 300 Myr.;In the second part of this thesis I describe the development of optical instrumentation in support of large spectroscopic surveys. I analyze the effects of flexure in the Binospec spectrograph, a multi-object spectrograph for the 6.5-meter MMT telescope at Mt. Hopkins, AZ. I design the active flexure control system and the calibration system, two physically distinct systems that together will enable accurate and stable spectro-photometric calibration.;Improvements to telescope collimation and mirror support provide additional benefit to spectroscopic surveys through superior image quality and spectrograph efficiency. I design and build a Shack-Hartmann wavefront sensor for the 1.5-meter Tillinghast telescope at Mount Hopkins, AZ. The wavefront sensor and accompanying software serve as valuable tools for measuring and correcting for optical aberrations.
机译:在本文的第一部分中,我介绍了在重力相互作用的星系对中潮汐触发恒星形成的研究。我使用光谱和光度学方法对本地系统进行观测,以证明触发恒星的形成既取决于系统的固有星系性质,又取决于系统的相对性质。较小的星系相互作用,其中星系的光度比超过大约六,仅在较低的光度伴星中产生触发的恒星形成。在相似亮度的星系之间的相互作用中,蓝色星系显示潮汐触发的恒星形成,但红色星系则没有;我在完整的光谱调查中测量了星系对之间的引力潮汐相互作用的强度,频率和时间尺度,红移为0.08至2。 0.38。星系年轻的星系中有三分之一与具有相似光度的伴星相互作用,会增强恒星形成活动。但是,触发恒星形成的最极端爆发很少见且寿命短。在相互作用的星系中增强恒星形成的典型持续时间约为300 Myr 。;在论文的第二部分中,我描述了支持大型光谱学调查的光学仪器的发展。我分析了Binospec光谱仪中的弯曲效应,Binospec光谱仪是山上6.5米MMT望远镜的多目标光谱仪。亚利桑那州霍普金斯。我设计了主动挠曲控制系统和校准系统,这两个物理上不同的系统一起可以实现准确,稳定的分光光度校准。我为亚利桑那州霍普金斯山的1.5米Tillinghast望远镜设计并制造了Shack-Hartmann波前传感器。波前传感器和随附的软件是用于测量和校正光学像差的宝贵工具。

著录项

  • 作者

    Woods, Deborah Freedman.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 299 p.
  • 总页数 299
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:01

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