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Low temperature properties of ternary magnetic rare earth transition metal germanides with the Sc5Co4Ge10-type structure

机译:具有Sc5Co4Ge10型结构的三元磁性稀土过渡金属锗化物的低温特性

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摘要

DC resistivity, dc magnetization, and specific heat of eight Sc[subscript]5Co[subscript]4Ge[subscript]10-type crystal structure compounds R[subscript]5T[subscript]4Ge[subscript]10 for R = Dy, Ho, Er, Tm, and T = Rh and Ir are presented. The resistivity, single crystal magnetization, and specific heat results show that in all those compounds, the magnetic moments order antiferromagnetically in the c direction at low temperature. However, in the Er and Tm compounds, the magnetizations along x-y hard directions do not show any anomalies above 2.0 K. This suggests that the ordered Er and Tm ions, which have positive quadrupole coefficients [alpha][subscript] j, interact with a crystal field that has an electronic potential valley along the c axis. The fitting of the hard axis magnetizations to Curie-Weiss law suggests that the resulting antiferromagnetic-like [theta] reflects the strength of the crystal field torque on the magnetic moments rather than the strength of antiferromagnetic exchange.
机译:R = Dy,Ho,Er的8种Sc [下标] 5Co [下标] 4Ge [下标] 10型晶体结构化合物R [下标] 5T [下标] 4Ge [下标] 10的直流电阻率,直流磁化强度和比热,Tm,T = Rh和Ir。电阻率,单晶磁化强度和比热结果表明,在所有这些化合物中,低温下的磁矩在c方向上反铁磁。然而,在Er和Tm化合物中,沿xy硬方向的磁化在2.0 K以上没有显示任何异常。这表明具有正四极系数αj的有序Er和Tm离子与α相互作用。沿c轴具有电势谷的晶体场。硬轴磁化强度与居里-魏斯定律的拟合表明,所得的反铁磁状θ反映了磁矩上的晶体场转矩的强度,而不是反铁磁交换的强度。

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  • 作者

    Parengkuan, Chanson;

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  • 年度 1988
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  • 原文格式 PDF
  • 正文语种 en
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