Syshchenko O, Day J, Beamish J
Department of Physics, University of Alberta, Edmonton, AB, T6G 2G7, Canada.
J Phys Condens Matter. 2009 Apr 22;21(16):164204. doi: 10.1088/0953-8984/21/16/164204. Epub 2009 Mar 31.
Following recent torsional oscillator measurements which appear to show the 'non-classical rotational inertia' which characterizes a supersolid, a number of experiments have searched for evidence of unusual behavior in other properties. We have developed a new technique for measuring the shear modulus of solid helium at low frequencies and small strains. In hexagonal close packed (4)He, the shear modulus increases dramatically below 200 mK, the temperature range where decoupling is seen in torsional oscillators. The modulus anomaly is frequency independent, depends strongly on strain amplitude, and is very sensitive to (3)He impurities. In these and other ways, the shear modulus closely mirrors the torsional oscillator behavior and it is clear that the two phenomena are closely related. We attribute the shear modulus effects to the elastic response of mobile dislocations and their pinning by (3)He impurities at low temperatures. A question then arises: are the modulus increases responsible for the frequency changes seen in torsional oscillator experiments? The expected frequency shifts appear to be much too small to explain the apparent decoupling, nor can elastic effects explain the 'blocked annulus' results or the behavior in small pores. In order to clarify the relationship between the shear modulus and torsional oscillator behaviors, we have recently made modulus measurements on (3)He, where no supersolid response is expected. Since dislocation motion depends on crystal structure it was important that these measurements be extended to the hexagonal close packed phase of (3)He, not just the body centered cubic phase.
最近的扭转振荡器测量结果似乎显示出了超固体所特有的“非经典转动惯量”,之后许多实验都在寻找其他性质中异常行为的证据。我们开发了一种新技术,用于在低频和小应变条件下测量固态氦的剪切模量。在六方密堆积的(4)He中,剪切模量在200 mK以下会急剧增加,这正是扭转振荡器中出现解耦的温度范围。模量异常与频率无关,强烈依赖于应变幅度,并且对(3)He杂质非常敏感。在这些方面以及其他方面,剪切模量与扭转振荡器的行为密切相关,很明显这两种现象紧密相连。我们将剪切模量效应归因于移动位错的弹性响应以及它们在低温下被(3)He杂质钉扎。于是出现了一个问题:模量增加是否是扭转振荡器实验中所观察到的频率变化的原因?预期的频率偏移似乎太小,无法解释明显的解耦现象,弹性效应也无法解释“阻塞环”结果或小孔中的行为。为了阐明剪切模量与扭转振荡器行为之间的关系,我们最近对(3)He进行了模量测量,预计(3)He不会有超固体响应。由于位错运动取决于晶体结构,所以将这些测量扩展到(3)He的六方密堆积相很重要,而不仅仅是体心立方相。