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Magnetization studied on spin alignments in organic molecule-based ferrimagnetics
H. H. Fu ; K. L. Yao ; Z. L. Liu
刊名Solid State Communications
2006
卷号139期号:6页码:289-294
关键词molecular magnet ferrimagnetics spin lattice model Green's function theory crystal chains system
ISSN号0038-1098
中文摘要A physics picture of spin alignments in molecule-based ferrimagnets is presented from studying the temperature dependence of the effective sublattice magnetic moments and the total reduced magnetization by means of Green's function theory combined with the Jordan-Wigner transformation. The ferrimagnetic chain includes an S = I biradical and an S = 1/2 monoradical with antiferromagnetic alternating interactions, and the S = I site in the chain is composed of two S = 1/2 spins coupled by a finite ferromagnetic interaction. From the calculations of the sublattice magnetic moments, the magnetic moment of the S = I biradical is negative, while that of the S = 1/2 monoradical is positive, leading to a ferrimagnetic ground state. With the different kinds of the elementary excitations and the competition between the magnetic interactions and thermal fluctuations, the temperature dependence of the magnetization displays rich thermodynamic properties. Meanwhile, the external magnetic field dependence of the magnetization has a clear plateau at one third of the saturation magnetization, which can be compared with the possible experimental findings. (c) 2006 Elsevier Ltd. All rights reserved.
原文出处://WOS:000240092300008
公开日期2012-04-13
内容类型期刊论文
源URL[http://ir.imr.ac.cn/handle/321006/34205]  
专题金属研究所_中国科学院金属研究所
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GB/T 7714
H. H. Fu,K. L. Yao,Z. L. Liu. Magnetization studied on spin alignments in organic molecule-based ferrimagnetics[J]. Solid State Communications,2006,139(6):289-294.
APA H. H. Fu,K. L. Yao,&Z. L. Liu.(2006).Magnetization studied on spin alignments in organic molecule-based ferrimagnetics.Solid State Communications,139(6),289-294.
MLA H. H. Fu,et al."Magnetization studied on spin alignments in organic molecule-based ferrimagnetics".Solid State Communications 139.6(2006):289-294.
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