论文标题
ND和RH取代对近代绝缘体CEFE2AL10的自旋动力学的影响
Effect of Nd and Rh substitution on the spin dynamics of Kondo insulator CeFe2Al10
论文作者
论文摘要
已经使用纯CEFE2AL10的单个晶体上的偏振中子研究了CEFE2AL10(旋转隙,共振模式)在CEFE2AL10中的Kondo-unsulator状态的动态磁力。结果表明,磁激发主要沿正骨A轴极化,并且可以确定它们沿正交C方向的分散体。还通过飞行时间技术研究了ND和RHOPED CEFE2AL0的多晶样品,目的是找出在磁性CE网站或电子掺杂或电子掺杂(RH)上,低能量的磁激励光谱如何在磁场上替代(ND)对转变型Fe sublattice的稀有量替代(ND)。磁和杂质的引入强烈改变了CE动态磁反应中的自旋间隙,并引起了准磁信号的出现。在LAFE2AL10和CEFE2AL10中研究的ND的晶体场激发也揭示了F-电子杂交对晶体场电势的显着影响。作为RH浓度的函数,观察到从围缘界限到金属近代晶状体响应的逐渐变化,这可能反映了杂交能量的减少。
The dynamic magnetic properties of the Kondo-insulator state in CeFe2Al10 (spin gap, resonance mode) have been investigated using polarized neutrons on a single crystal of pure CeFe2Al10. The results indicate that the magnetic excitations are polarized mainly along the orthorhombic a axis and their dispersion along the orthorhombic c direction could be determined. Polycrystalline samples of Nd- and Rh-doped CeFe2Al0 were also studied by the time-of-flight technique, with the aim of finding out how the low-energy magnetic excitation spectra change upon isoelectronic substitution of the rare-earth (Nd) on the magnetic Ce site or electron doping (Rh) on the transition-element Fe sublattice. The introduction of magnetic Nd impurities strongly modifies the spin gap in the Ce dynamic magnetic response and causes the appearance of a quasielastic signal. The crystal-field excitations of Nd, studied in both LaFe2Al10 and CeFe2Al10, also reveal a significant influence of f-electron hybridization (largest in the case of Ce) on the crystal-field potential. As a function of the Rh concentration, a gradual change is observed from a Kondo-insulator to a metallic Kondo-lattice response, likely reflecting the decrease in the hybridization energy.