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Quantifying surface loss of mechanically polished silica cantilevers.

机译:量化机械抛光的二氧化硅悬臂梁的表面损失。

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摘要

Materials with a high quality factor are used, for the test mass and suspension elements, in interferometric gravitational wave detectors to reduce off resonance thermal displacement noise. An experiment to increase the quality factor of mechanically polished silica cantilevers by etching their surface is described. An estimation of the thickness of the damaged layer due to polishing is found and we estimate how lossy this layer is. This was achieved by repeatedly etching a cantilever in solution and measuring its mechanical loss in each instance. In this way mechanical loss as a function of etch depth can be determined. This layer was estimated to be 0.5 micron deep with a loss of Os=2.98 x 10-8 which is three times higher than the surface loss predicted by the current empirical model. This has important implications as the test mass mirrors used in interferometric gravitational wave detectors are comprised of mechanically polished silica. Measurements of single layer dielectric coatings of silica, tantala and doped tantala for use in interferometric gravitational wave detectors is also described. It was found that the silica coating had the lowest level of measured mechanical loss overall at 3.77 x 10-5. It was also found doped tantala had a lower level of measured loss than tantala, 2.965 x 10-4 in the doped case compared to 4.24 x 10-4.
机译:在干涉式重力波检测器中,将具有高品质因数的材料用于测试质量和悬挂元件,以减少共振热位移噪声。描述了通过蚀刻表面来增加机械抛光的二氧化硅悬臂梁的品质因数的实验。发现了由于抛光而导致的受损层厚度的估计,并且我们估计了该层的有损程度。这是通过反复蚀刻溶液中的悬臂并测量其机械损耗来实现的。以这种方式,可以确定作为蚀刻深度的函数的机械损耗。该层的厚度估计为0.5微米,Os = 2.98 x 10-8的损失是当前经验模型预测的表面损失的三倍。这具有重要意义,因为干涉重力波检测器中使用的测试质量反射镜由机械抛光的二氧化硅组成。还描述了用于干涉重力波检测器的二氧化硅,塔塔拉和掺杂塔塔拉的单层介电涂层的测量。发现该二氧化硅涂层总体上具有最低的测量的机械损失水平,为3.77×10-5。还发现掺杂的塔塔拉粉具有比塔塔拉粉更低的实测损耗,在掺杂情况下为2.965 x 10-4,而与4.24 x 10-4相比。

著录项

  • 作者

    Holt, Paul.;

  • 作者单位

    University of Glasgow (United Kingdom).;

  • 授予单位 University of Glasgow (United Kingdom).;
  • 学科 Materials science.
  • 学位 M.Sc.
  • 年度 2007
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋工程;
  • 关键词

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