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An effective-field theory study of trilayer Ising nanostructure: Thermodynamic and magnetic properties

机译:三层伊辛纳米结构的有效场理论研究:热力学和磁学性质

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摘要

Thermodynamic and magnetic properties of a trilayer nanostructure of hexagonal lattices described by the spin-1/2 Ising model are investigated by the use of the effective-field theory (EFT) with correlations. The results for the magnetization, the free energy, the internal energy, the entropy, the specific heat and the critical frontiers were obtained. The critical temperature and the compensation temperature are investigated with a negative interlayer coupling, in order to clarify the distinction between the ferromagnetic and ferrimagnetic behaviors. From the thermal variations of the total magnetization, the six compensation types can be found, i.e., L-, Q-, R-, S-, P-, and N-types.
机译:通过使用有效场理论(EFT)及其相关性,研究了自旋1/2 Ising模型所描述的六角形晶格的三层纳米结构的热力学和磁性。得到了磁化,自由能,内能,熵,比热和临界边界的结果。为了阐明铁磁行为与亚铁磁行为之间的区别,使用负层间耦合研究了临界温度和补偿温度。从总磁化强度的热变化中,可以找到六种补偿类型,即L型,Q型,R型,S型,P型和N型。

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