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Surface acoustic wave investigation of hydrogen tunneling in niobium films at low temperatures.

机译:铌薄膜中低温氢隧穿的表面声波研究。

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摘要

The tunneling of hydrogen in niobium at temperatures below 10 Kelvins is of great interest as it represents a model system in which a well known tunneling atom interacts with electrons and phonons. This tunneling system has been studied thoroughly in bulk samples of Nb:H. Prior results have been explained successfully with a "standard model" containing a narrow density of states, a low-energy cutoff, and a weak tunneling system-phonon coupling. The tunneling of hydrogen in thin polycrystalline films of Nb, however, has not been studied. We have used GHz surface acoustic waves to examine the properties of Nb:H films to see if the standard model applied to thin films. The changes in attenuation and velocity of the surface waves were measured from 0.1 K to 10 K. The standard model explains our results in a qualitative way. To improve agreement with the data, a small number of strongly-coupled tunneling systems must be added to the model. We also find indications that states may exist at energies excluded from the standard model.
机译:低于10开尔文斯温度下的氢在铌中的隧穿非常重要,因为它代表了一个模型系统,其中众所周知的隧穿原子与电子和声子相互作用。已对大量Nb:H样品进行了深入研究。先前的结果已经成功地用“标准模型”进行了解释,“标准模型”包含窄的状态密度,低的能量截止和弱的隧穿系统-声子耦合。但是,尚未研究Nb薄膜中氢的隧穿。我们已经使用GHz表面声波来检查Nb:H薄膜的特性,以查看标准模型是否适用于薄膜。从0.1 K到10 K测量了表面波的衰减和速度变化。标准模型以定性的方式解释了我们的结果。为了提高与数据的一致性,必须在模型中添加少量的强耦合隧道系统。我们还发现有迹象表明状态可能存在于标准模型所排除的能量中。

著录项

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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