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A low-temperature specific heat study of giant dielectric constant materials

机译:一种巨大介电常数材料的低温比热研究

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摘要

A low-temperature specific heat study has been performed on the insulating giant dielectric constant material CaCu3Ti4O12 and two related compounds, Bi2/3Cu3Ti4O12 and La0.5Na0.5Cu3Ti4O12, from 0.6 to 10 K. From analyzing the specific heat data in a very low-temperature range, 0.6–1.5 K, and moderately low-temperature range, 1.5–5 K, in addition to the expected Debye terms, we observed significant contributions originating from the linear and Einstein terms, which we attributed as the manifestation of low-lying elementary excitations due to lattice vibrations occurring at the grain boundaries and induced by local defects. Together with the findings on electronic and mechanical properties, a phenomenological model is proposed to explain the high dielectric constant behavior in both low and high frequency regions.
机译:已对绝缘巨型介电常数材料CaCu3Ti4O12和两种相关化合物Bi2 / 3Cu3Ti4O12和La0.5Na0.5Cu3Ti4O12进行了0.6至10 K的低温比热研究。通过在非常低的温度下分析比热数据除预期的德拜项外,温度范围为0.6–1.5 K,适度的低温范围为1.5–5 K,我们观察到线性和爱因斯坦项产生的重要贡献,我们将其归因于低地势的表现。由于晶格振动发生在晶界并由局部缺陷引起的基本激发。结合电子和机械性能的发现,提出了一种现象学模型来解释在低频和高频区域中的高介电常数行为。

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