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Advanced gravitational radiation transducers with small mass and ultra-low temperature SQUIDs.

机译:具有小质量和超低温SQUID的先进重力辐射换能器。

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摘要

The transducer and SQUID are two major components for a resonant-mass gravitational wave antenna. They must always have high sensitivity and low noise. In this work, a two-mode superconducting inductive transducer for a three-mode gravitational wave bar antenna is designed. The construction and tests of small mass resonators that form the transducer are described. The experiments and test results of commercial dc SQUIDs at ultra-low temperature are discussed in detail.; Special problems arise when SQUIDs are tested at ultra-low temperature in vacuum. We address the problems and provide proper solutions. Our experiments show that the dc SQUID made by Quantum Design operates well at temperatures as low as 50 mK. We find that the SQUID has an energy resolution of 2600 {dollar}hbar{dollar}. The SQUID's noise did not decrease with temperature as was expected. The possible reasons for this are discussed.; The two-mode inductive transducer is designed based on a noise analysis of the complete three-mode system. A small mass of 8-9 grams is chosen for the transducer's diaphragm. The geometry of both the small mass resonator and the intermediate resonator that form the transducer is designed with the aid of finite element analysis.; One of two aluminum prototype resonators reached a mechanical Q of {dollar}8.3times10sp6{dollar} at 4.2 K. Among the three fabricated niobium resonators, one achieved mechanical Qs of {dollar}2.4times10sp7{dollar} at 4.2 K and {dollar}3.0times10sp7{dollar} at around 7 K. Another one with arms cut by Electrical Discharge Machining has reached mechanical Qs of {dollar}7.4times10sp6{dollar} at 4.2 K and {dollar}1.3times10sp7{dollar} at 8.3 K. Its electrical Q has been found to be {dollar}5.0times10sp5{dollar} with an electromechanical coupling efficiency of 15%. This is equivalent to an average {dollar}beta{dollar}Q of {dollar}4.7times10sp5.{dollar} This resonator is suitable for use in working transducers. An effective annealing procedure was discovered and applied in the fabrication process of these niobium resonators.
机译:换能器和SQUID是谐振质量重力波天线的两个主要组件。它们必须始终具有高灵敏度和低噪声。在这项工作中,设计了一种用于三模重力波棒天线的双模超导感应换能器。描述了构成换能器的小型质量谐振器的构造和测试。详细讨论了商用直流SQUID在超低温下的实验和测试结果。在超低温真空中测试SQUID时会出现特殊问题。我们解决问题并提供适当的解决方案。我们的实验表明,Quantum Design生产的dc SQUID在低至50 mK的温度下也能很好地工作。我们发现SQUID的能量分辨率为2600 {dollar} hbar {dollar}。 SQUID的噪声并未如预期的那样随温度降低。讨论了可能的原因。基于完整的三模式系统的噪声分析,设计了两模式感应式传感器。为传感器的膜片选择了8-9克的小质量。借助于有限元分析来设计形成换能器的小质量谐振器和中间谐振器的几何形状。两个铝制原型谐振器中的一个在4.2 K时达到了机械Qs为{dollar} 8.3×10sp6 {dollar}。在三个制造的铌谐振器中,其中一个在4.2 K时达到了{Qs} {2.4×10sp7 {dollar}。约7 K时为3.0×10sp7 {dollar}。另一具通过放电加工切断手臂的臂在4.2 K时的机械Qs为{dollar} 7.4×10sp6 {dollar},而在8.3 K时的机械Qs为{dollar} 1.3×10sp7 {dollar}。已经发现Q为{美元} 5.0×10sp5 {美元},机电耦合效率为15%。这等效于{dollar} 4.7×10sp5的平均{dollar} beta {dollar}Q。{dollar}该谐振器适用于工作换能器。发现了一种有效的退火程序,并将其应用于这些铌谐振腔的制造过程中。

著录项

  • 作者

    Geng, Ziniu.;

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Physics Electricity and Magnetism.; Physics Condensed Matter.; Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 电磁学、电动力学;天文学;
  • 关键词

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