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Magnetic structures of R2Fe2Si2C intermetallic compounds: Evolution to Er2Fe2Si2C and Tm2Fe2Si2C

机译:R2FE2SI2C金属间化合物的磁性结构:ER2FE2SI2C和TM2FE2SI2C的进化

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摘要

The magnetic structures of Er2Fe2Si2C and Tm2Fe2Si2C (monoclinic Dy2Fe2Si2C-type structure, C2/m space group) have been studied by neutron powder diffraction, complemented by magnetization, specific heat measurements, and Er-166 Mossbauer spectroscopy, over the temperature range 0.5 to 300 K. Their magnetic structures are compared with those of other R2Fe2Si2C compounds. Antiferromagnetic ordering of the rare-earth sublattice is observed below the Neel temperatures of T-N = 4.8(2) K and T-N = 2.6(3) K for Er2Fe2Si2C and Tm2Fe2Si2C, respectively. While Er2Fe2Si2C and Tm2Fe2Si2C have the same crystal structure, they possess different magnetic structures compared with the other R2Fe2Si2C (R = Nd, Gd, Tb, Dy, and Ho) compounds. In particular, two different propagation vectors are observed below the Neel temperatures: k = [1/2, 1/2, 0] (for Er2Fe2Si2C) and k = [0.403(1), 1/2, 0] (for Tm2Fe2Si2C). For both compounds, the difference in propagation vectors is also accompanied by different orientations of the Er and Tm magnetic moments. Although the magnetic structures of Er2Fe2Si2C and Tm2Fe2Si2C differ from those of the other R(2)Fe(2)Si(2)Ccompounds, we have established that the two magnetic structures are closely related to each other. Our experimental and first-principles studies indicate that the evolution of the magnetic structures across the R2Fe2Si2C series is a consequence of the complex interplay between the indirect exchange interaction and crystal field effects.
机译:Er2Fe2Si2C和Tm2Fe2Si2C(单斜Dy2Fe2Si2C型结构,C2 /米的空间群)的磁结构已经研究了中子衍射,由磁化补充,比热测量,和Er-166穆斯堡尔谱,在温度范围为0.5至300 K.将它们的磁性结构与其他R2FE2SI2C化合物的磁性结构进行比较。在ER2FE2SI2C和TM2FE2SI2C的T-N = 4.8(2)k和T-N = 2.6(3)k和TM2FE2SI2C的NEER温度下方观察到稀土化子系的反铁磁性排序。虽然ER2FE2SI2C和TM2FE2SI2C具有相同的晶体结构,但与其他R2FE2SI2C(R = ND,GD,TB,DY和HO)化合物相比,它们具有不同的磁性结构。特别地,在Neel温度下方观察到两种不同的传播载体:K = [1/2,1 / 2,0](对于ER2FE2SI2C)和K = [0.403(1),1/2,0](用于TM2FE2SI2C) 。对于两种化合物,传播载体的差异也伴随着ER和TM磁矩的不同取向。尽管ER2FE2SI2C和TM2FE2SI2C的磁性结构与其他R(2)Fe(2)Si(2)CCompound的磁性结构不同,但我们已经确定了两个磁性结构彼此密切相关。我们的实验和第一原理研究表明,R2FE2SI2C系列磁性结构的演变是间接交换相互作用和晶体场效应之间的复杂相互作用的结果。

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  • 来源
    《Physical review, B》 |2019年第18期|共12页
  • 作者单位

    Australian Def Force Acad UNSW Canberra Sch Sci Canberra Bc 2610 Australia;

    Univ Rennes ISCR CNRS ENSCR UMR 6226 F-35000 Rennes France;

    Australian Def Force Acad UNSW Canberra Sch Sci Canberra Bc 2610 Australia;

    Univ Rennes ISCR CNRS ENSCR UMR 6226 F-35000 Rennes France;

    Univ Rennes ISCR CNRS ENSCR UMR 6226 F-35000 Rennes France;

    Australian Def Force Acad UNSW Canberra Sch Sci Canberra Bc 2610 Australia;

    Australian Nucl Sci &

    Technol Org Australian Ctr Neutron Scattering Lucas Heights NSW 2234 Australia;

    McGill Univ Dept Phys Montreal PQ H3A 2T8 Canada;

    Univ Toyama Grad Sch Sci &

    Engn Gofu Ku Toyama 9308555 Japan;

    Australian Def Force Acad UNSW Canberra Sch Sci Canberra Bc 2610 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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