首页> 外文期刊>Journal of Physics. Condensed Matter >Magnetic interactions in equi-atomic rare-earth intermetallic alloys RScGe (R = Ce, Pr, Nd and Gd) studied by time differential perturbed angular correlation spectroscopy and ab initio calculations
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Magnetic interactions in equi-atomic rare-earth intermetallic alloys RScGe (R = Ce, Pr, Nd and Gd) studied by time differential perturbed angular correlation spectroscopy and ab initio calculations

机译:通过时差扰动角相关光谱和从头算计算研究等原子稀土金属间合金RScGe(R = Ce,Pr,Nd和Gd)中的磁相互作用

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摘要

Applying the time differential perturbed angular correlation (TDPAC) technique we have measured electric and magnetic hyperfine fields of the ~(111) Cd impurity in equi-atomic rare-earth intermetallic alloys RScGe (R = Ce, Pr and Gd) showing antiferro- and ferromagnetism with unusually high ordering temperatures. The Cd nuclei occupying the Sc site show high magnetic hyperfine fields with saturation values B_(ht)(0) = 21 kG, 45 kG and 189 kG in CeScGe, PrScGe and GdScGe, respectively. By comparing the results with the hyperfine field data of Cd in rare-earth metals and estimations from the RKKY model, we find evidence for the presence of additional spin density at the probe nucleus, possibly due to spin polarization of Sc d band electrons. The principal electric field gradient component V_(gg) in CeScGe, PrScGe and GdScGe_ has been determined to be 5.3 x 10~(21) V m~(-2), 5.5 x 10~(21) V m~(-2) and 5.6 x 10~(21) V m~(-2), respectively. Supplementing the experimental measurements, we have carried out ab initio calculations for pure and Cd-doped RScGe compounds with R = Ce, Pr, Nd and Gd using the full potential linearized augmented plane wave (FLAPW) method based on density functional theory (DFT). From the total energies calculated with and without spin polarization we find ferrimagnetic ground states for CeScGe and PrScGe while NdScGe and GdScGe are ferromagnetic. In addition, we find a sizable magnetic moment at the Sc site, increasing from 0.10 μ_B in CeScGe to0.3 μ_B in GdScGe, confirming the spin polarization of Sc d band electrons. The calculated electric field gradient and magnetic hyperfine fields of the Cd impurity closely agree with the experimental values. We believe spin polarization of Sc 3d band electrons, strongly hybridized with spin polarized 5d band electrons of the rare-earth, enables a long range Ruderman_Kittel_Kasuya_Yosida (RKKY) interaction between RE 4f moments which in turn leads to high magnetic ordering temperatures in RScGe compounds.
机译:应用时差微扰角相关技术(TDPAC),我们测量了等原子稀土金属间合金RScGe(R = Ce,Pr和Gd)中的〜(111)Cd杂质的电和磁超精细场,显示出反铁和具有异常高的订购温度的铁磁性。占据Sc位点的Cd原子核在CeScGe,PrScGe和GdScGe中分别显示出饱和度B_(ht)(0)= 21 kG,45 kG和189 kG的高磁场超精细场。通过将结果与稀土金属中Cd的超精细场数据进行比较,以及根据RKKY模型进行的估算,我们找到了在探针核上存在额外自旋密度的证据,这可能是由于Sc d带电子的自旋极化。 CeScGe,PrScGe和GdScGe_中的主电场梯度分量V_(gg)已确定为5.3 x 10〜(21)V m〜(-2),5.5 x 10〜(21)V m〜(-2)和5.6 x 10〜(21)V m〜(-2)作为实验测量的补充,我们使用了基于密度泛函理论(DFT)的全势线性化增强平面波(FLAPW)方法,对R = Ce,Pr,Nd和Gd的纯Cd和Cd掺杂RScGe化合物进行了从头计算。 。从在有自旋极化和无自旋极化的情况下计算出的总能量,我们可以得出CeScGe和PrScGe的亚铁磁基态,而NdScGe和GdScGe是铁磁的。此外,我们在Sc位点发现了一个相当大的磁矩,从CeScGe中的0.10μB增加到GdScGe中的0.3μB,证实了Sc d带电子的自旋极化。 Cd杂质的电场梯度和超精细磁场的计算值与实验值非常吻合。我们认为,Sc 3d能带电子的自旋极化与稀土的自旋极化5d能带电子强烈杂交,可实现RE 4f矩之间的长距离Ruderman_Kittel_Kasuya_Yosida(RKKY)相互作用,进而导致RScGe化合物的高磁序温度。

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