论文标题

在等构结构UM $ _2 $ si $ _2 $ family中的5 $ f $电子的双重性质:从抗fiferro-通过隐藏订单

Dual nature of 5$f$ electrons in the isostructural UM$_2$Si$_2$ family: from antiferro- to Pauli paramagnetism via hidden order

论文作者

Amorese, Andrea, Sundermann, Martin, Leedahl, Brett, Marino, Andrea, Takegami, Daisuke, Gretarsson, Hlynur, Hloskovsky, Andrei, Schlüter, Christoph, Haverkort, Maurits W., Huang, Yingkai, Szlawska, Maria, Kaczorowski, Dariusz, Ran, Sheng, Maple, M. Brian, Bauer, Eric D., Leithe-Jasper, Andreas, Thalmeier, Peter, Tjeng, Liu Hao, Severing, Andrea

论文摘要

使用偶极极限和硬X射线光电子光谱的非弹性X射线散射,我们在UM $ _2 $ _2 $ _2 $ _2 $中建立了U $ 5F $电子的双重性质(M = PD,Ni,ru,Fe),无论其定位程度如何。我们已经观察到这些化合物具有共同的局部原子状状态,该状态由U $ 5F^2 $配置与$γ_1^{(1)} $和$γ_2$ quasi-doublet对称性对称性很好地描述。但是,U 5 $ f^3 $配置的金额在UM $ _2 $ si $ _2 $系列之间差异很大,这表明从M = PD到Ni到Ni到RU的U5 $ F $ triineracy增加了U5 $ f $ triineracy,并提高了FE Comp。确定的电子状态解释了在UPD $ _2 $ _2 $ _2 $和UNI $ _2 $ _2 $ si $ _2 $中形成的非常大的有序磁矩的形成,uru $ _2 $ _2 $ si $ _2 $中的隐藏订单所需的轨道自由度的可用性以及出现在Pauli paramagnet $ sif yfe yfe yfe yfairi $ _2 $ _2 $ _2 $。现在可能会绘制U $ M_2 $ SI $ _2 $ _2 $ _2 $ _2 $ _2 $的统一图片,从而为新实验提供了建议,以诱导以四方以身体为中心的THCR $ _2 $ si $ _2 $结构的U化合物中隐藏订单和/或超导性。

Using inelastic x-ray scattering beyond the dipole limit and hard x-ray photoelectron spectroscopy we establish the dual nature of the U $5f$ electrons in UM$_2$Si$_2$ (M = Pd, Ni, Ru, Fe), regardless of their degree of delocalization. We have observed that the compounds have in common a local atomic-like state that is well described by the U $5f^2$ configuration with the $Γ_1^{(1)}$ and $Γ_2$ quasi-doublet symmetry. The amount of the U 5$f^3$ configuration, however, varies considerably across the UM$_2$Si$_2$ series, indicating an increase of U5$f$ itineracy in going from M=Pd to Ni to Ru, and to the Fe compound. The identified electronic states explain the formation of the very large ordered magnetic moments in UPd$_2$Si$_2$ and UNi$_2$Si$_2$, the availability of orbital degrees of freedom needed for the hidden order in URu$_2$Si$_2$ to occur, as well as the appearance of Pauli paramagnetism in UFe$_2$Si$_2$. A unified and systematic picture of the U$M_2$Si$_2$ compounds may now be drawn, thereby providing suggestions for new experiments to induce hidden order and/or superconductivity in U compounds with the tetragonal body-centered ThCr$_2$Si$_2$ structure.

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