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块状材料的低温共振声学光谱法(低温共振声学光谱学)。

Cryogenic resonant acoustic spectroscopy of bulk materials (CRA spectroscopy).

作者信息

Zimmer Anja, Nawrodt Ronny, Koettig Torsten, Neubert Ralf, Thürk Matthias, Vodel Wolfgang, Seidel Paul, Tünnermann Andreas

机构信息

Institute of Solid State Physics, Friedrich-Schiller-University Jena, Helmholtzweg 5, D-07743 Jena, Germany.

出版信息

Rev Sci Instrum. 2007 Jun;78(6):063905. doi: 10.1063/1.2747096.

Abstract

The capability to measure Q factors at cryogenic temperatures enhances the ability to study relaxation processes in solids. Here we present a high-precision cryogenic setup with the ability to measure Q factors of at least 10(9). This level of sensitivity offers new potential for analyzing relaxation processes in solids and for correlating mode shape and relaxation strength. Our improved method of mechanical spectroscopy, cryogenic resonant acoustic spectroscopy of bulk materials, is verified by identifying relaxation processes in low-loss quartz crystals. For the first time, we observe additional damping peaks. The mechanical Q factors of different modes of cylindrical crystalline quartz substrates were measured from 300 down to 6 K. Resonant modes with frequencies between 10 and 325 kHz were excited without contact to the substrates and the ring down of the amplitudes was recorded using an interferometric vibration readout.

摘要

在低温下测量品质因数的能力增强了研究固体中弛豫过程的能力。在此,我们展示了一种高精度低温装置,其能够测量至少10⁹的品质因数。这种灵敏度水平为分析固体中的弛豫过程以及关联振型和弛豫强度提供了新的潜力。我们改进的机械光谱方法,即块状材料的低温共振声学光谱,通过识别低损耗石英晶体中的弛豫过程得到了验证。我们首次观察到了额外的阻尼峰。从300 K到6 K测量了圆柱形晶体石英衬底不同模式的机械品质因数。在不接触衬底的情况下激发频率在10至325 kHz之间的共振模式,并使用干涉振动读数记录振幅的衰减。

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