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Acoustic quality factor of titanium from 50 mK to 300 K

机译:钛的声品质因数从50 mK到300 K

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摘要

The amplitude-independent mechanical quality factor Q of grade 1 commercially pure polycrystalline titanium has been measured in the temperature range from 50 mK to 300 K. Data were obtained from a torsional mode of a mechanical resonator at about 1 kHz. Maximum Qs of 2-3 million were observed below 30 K in thermally stress-relieved material. A recrystallizing anneal led to reduced Qs. High-resolution frequency measurements gave the temperature dependence of the dynamic shear modulus. From 2 to 35 K, the modulus is shown to correspond to a superposition of electron-gas and phonon contributions. From 50 mK to 2 K, anomalies in both Q and the shear modulus do not exhibit the temperature dependence expected for superconductivity. This study is part of the continuing work in this laboratory on acoustic losses in high-Q materials at low temperatures, of particular interest for the construction of sensitive detectors of gravitational radiation.
机译:已在50 mK至300 K的温度范围内测量了等级1的商用纯多晶钛的与振幅无关的机械品质因数Q。从机械共振器的扭转模式以大约1 kHz的频率获得数据。在消除热应力的材料中,在30 K以下观察到的最大Qs为2-3百万。重结晶退火导致Qs降低。高分辨率频率测量给出了动态剪切模量的温度依赖性。从2到35 K,模量显示为对应于电子气和声子贡献的叠加。从50 mK到2 K,Q和剪切模量的异常都没有表现出对超导性的温度依赖性。这项研究是该实验室针对低温下高Q材料的声损耗进行的持续工作的一部分,这对于构造重力辐射灵敏探测器尤为重要。

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