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Recommendations for accurate heat capacity measurements using a Quantum Design physical property measurement system

机译:使用Quantum Design物理性质测量系统进行准确的热容测量的建议

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A commercial instrument for determination of heat capacities of solids from ca. 400 K to 0.4 K, the physical property measurement system from Quantum Design, has been used to determine the heat capacities of a standard samples (sapphire [single crystal] and copper). We extend previous tests of the PPMS in three important ways: to temperatures as low as 0.4 K; to samples with poor thermal conductivity; to compare uncertainty with accuracy. We find that the accuracy of heat capacity determinations can be within 1 percent for 5 K < T< 300 K and 5 percent for 0.7 K < T< 5 K. Careful attention should be paid to the relative uncertainty for each data point, as determined from multiple measurements. While we have found that it is possible in some circumstances to obtain excellent results by measurement of samples that contribute more than ca. 1/3 to the total heat capacity, there is no "ideal" sample mass and sample geometry also is an important consideration. In fact, our studies of pressed pellets of zirconium tungstate, a poor thermal conductor, show that several samples of different masses should be determined for the highest degree of certainty.
机译:一种用于测定固体热容量的商用仪器。 Quantum Design的物理性能测量系统400 K至0.4 K已用于确定标准样品(蓝宝石[单晶]和铜)的热容量。我们以三种重要方式扩展了先前对PPMS的测试:温度低至0.4 K;导热性差的样品;比较不确定性与准确性。我们发现,对于5 K

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