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Thermal Properties of Ferrimagnetic Systems

机译:铁磁系统的热学性质

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The heat capacity of some ferrimagnets has additional structures like a shoulder in the Schottky-like peak, or emergence of a second peak when an external magnetic field is applied. It is shown here that the ferromagnetic and anti-ferromagnetic elementary excitation spectra give rise to two independent heat capacity peaks, one enveloped by the other, which add up to give the peak for the total system. Taking this into account helps understand the additional structures in the peaks. Moreover, the classification of ferrimagnets into predominantly antiferromagnetic, ferromagnetic, or a mixture of the two is shown to be validated by studying them under additional influences like dimerization and frustration. Because these two are shown to influence the ferromagnetic and antiferromagnetic dispersion rela tions—and hence the quantities like heat capacity and magnetic susceptibility—by different amounts, the characterization of ferrimagnetic systems (1,1/2), (3/2,1) and (3/2,1/2) is brought out more clearly. Both these influences enhance antiferromagnetic character. PACS numbers: 75.10.Jm, 75.50.Ge.
机译:一些Ferrimagnets的热容具有其他结构,例如在肖特基样峰中的肩部,或者在施加外部磁场时出现第二个峰。此处显示,铁磁和反铁磁的基本激发光谱会产生两个独立的热容峰,一个被另一个包络,这相加得出整个系统的峰。考虑到这一点有助于了解峰中的其他结构。而且,通过在另外的影响(例如二聚作用和失意作用)下对它们进行研究,证实了将铁质合金主要分为反铁磁,铁磁或两者的混合物。由于显示了这两个因素会不同程度地影响铁磁和反铁磁色散关系,从而影响诸如热容和磁化率之类的量,因此亚铁磁系统的特性(1,1 / 2),(3 / 2,1) (3 / 2,1 / 2)更加清晰。这两种影响都增强了反铁磁特性。 PACS编号:75.10.Jm,75.50.Ge。

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