Low-Temperature Behavior of the Specific Heat for an N-Spin Ferromagnetic Material in an External Magnetic Field

Seung-Yeon Kim
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Abstract

A ferromagnetic material in the absence of an external magnetic field shows the peak of its specific heat in low temperature, called the Schottky anomaly, which is vital in understanding the low-energy structure of a given material. A general formula for the low-temperature behavior of the specific heat of an N-spin ferromagnetic material in an external magnetic field (the generalized Schottky anomaly) is obtained for the first time. Also, as a representative example of ferromagnetic materials in an external magnetic field, the low-temperature behavior of the specific heat for the Ising ferromagnet is studied.
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外磁场中n -自旋铁磁材料的低温比热行为
在没有外部磁场的情况下,铁磁性材料在低温时显示出其比热的峰值,称为肖特基异常,这对于理解给定材料的低能结构至关重要。首次得到了n自旋铁磁材料在外加磁场中的低温比热行为的一般公式(广义肖特基异常)。同时,作为铁磁材料在外加磁场作用下的典型例子,研究了伊辛铁磁的低温比热行为。
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