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Nernst heat theorem for the Casimir-Polder interaction between a magnetizable atom and ferromagnetic dielectric plate

机译:磁化原子和铁磁介质板之间的Casimir-Bolder相互作用的内部热定理

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摘要

We find the low-temperature behavior of the Casimir-Polder free energy for a polarizable and magnetizable atom interacting with a plate made of ferromagnetic dielectric material. It is shown that the corresponding Casimir-Polder entropy goes to zero with vanishing temperature, i.e., the Nernst heat theorem is satisfied, if the dc conductivity of the plate material is disregarded in calculations. If the dc conductivity is taken into account, the Nernst theorem is violated. These results are discussed in light of recent experiments.
机译:我们发现Casimir-Bolder自由能的低温行为,用于与由铁磁介电材料制成的板相互作用的可极化和可磁化的原子。 结果表明,如果在计算中忽略了板材的DC电导率,则相应的Casimir-Bolder熵熵与消失温度变为零。 如果考虑到DC电导率,则违反了内部的定理。 根据最近的实验讨论了这些结果。

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