Surface acoustic wave propagation in Nb:H at low temperatures

A. Engebretson, B. Golding
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Abstract

The acoustic properties of evaporated polycrystalline niobium films have been studied to temperatures below 100 mK using surface acoustic waves. The experiments probe the process which occurs when hydrogen atoms tunnel between two nearly degenerate interstitial sites. The interaction of sound with tunneling defects leads to temperature dependent changes in acoustic absorption and velocity below 10 K. By analyzing the acoustic properties, we extract the tunneling system relaxation rates and their coupling strengths to electrons and phonons. The presence of the superconducting gap below T/sub c/ inhibits relaxation through the electronic channel allowing us to separate electronic and phononic decay paths.
表面声波在Nb:H中的低温传播
利用表面声波研究了蒸发多晶铌薄膜在100 mK以下温度下的声学特性。实验探讨了氢原子在两个近简并间隙位之间隧穿的过程。在10 K以下,声与隧道缺陷的相互作用导致声吸收和声速随温度的变化。通过分析隧道系统的声学特性,我们提取了隧道系统的弛豫速率及其与电子和声子的耦合强度。T/sub c/以下超导间隙的存在抑制了通过电子通道的弛豫,使我们能够分离电子和声子衰变路径。
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