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Heat capacity of cylindrically confined helium: theoretical predictions versus experimental data

机译:圆柱形受限氦的热容量:理论预测与实验数据

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摘要

Different systems which could exhibit size-dependent second-order phase transitions have been studied experimentally during the last quarter century. The validity of the proposed theoretical results is verified by comparing high-resolution experimental data with an analytical evaluation of the heat capacity of confined ~4He. It is shown that the theoretical approach to the problem of the finite-size effect gives results that reasonably match the experimental data over a wide range of system sizes, from tens of nanometers up to a few micrometers for the cylindrical type of confinement geometry. The dependences of the shift of transition temperature on the cylinder size and boundary conditions are analyzed. The agreement of the results with finite-size scaling theory is confirmed.
机译:在上个四分之一世纪中,已经通过实验研究了可能表现出与尺寸有关的二阶相变的不同系统。通过将高分辨率实验数据与对〜4He受限热容量的分析评估进行比较,验证了所提出理论结果的有效性。结果表明,对有限尺寸效应问题的理论方法得出的结果可以合理地匹配各种系统尺寸的实验数据,从圆柱形的约束几何形状的几十纳米到几微米。分析了转变温度变化对气缸尺寸和边界条件的依赖性。证实了结果与有限尺寸缩放理论的一致性。

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