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Thermal Expansion and Magnetostriction Measurements at Cryogenic Temperature Using the Strain Gauge Method

机译:使用应变片法在低温下的热膨胀和磁致伸缩测量

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摘要

Thermal expansion and magnetostriction, the strain responses of a material to temperature and a magnetic field, especially properties at low temperature, are extremely useful to study electronic and phononic properties, phase transitions, quantum criticality, and other interesting phenomena in cryogenic engineering and materials science. However, traditional dilatometers cannot provide magnetic field and ultra-low temperature (<77 K) environment easily. This paper describes the design and test results of thermal expansion and magnetostriction at cryogenic temperature using the strain gauge method based on a Physical Properties Measurements System (PPMS). The interfacing software and automation were developed using LabVIEW. The sample temperature range can be tuned continuously between 1.8 and 400 K. With this PPMS-aided measuring system, we can observe temperature and magnetic field dependence of the linear thermal expansion of different solid materials easily and accurately.
机译:热膨胀和磁致伸缩,材料对温度和磁场的应变响应,特别是低温下的特性,对于研究电子和声子特性,相变,量子临界以及低温工程和材料科学中的其他有趣现象非常有用。 。但是,传统的膨胀仪无法轻松提供磁场和超低温(<77 K)环境。本文介绍了基于物理性质测量系统(PPMS)的应变仪方法在低温下的热膨胀和磁致伸缩设计和测试结果。接口软件和自动化是使用LabVIEW开发的。样品温度范围可在1.8至400 K之间连续调节。借助这种PPMS测量系统,我们可以轻松,准确地观察不同固体材料线性热膨胀的温度和磁场依赖性。

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