论文标题

CECU $ _2 $ SI $ _2 $的可能多轨基地状态

Possible multi-orbital ground state in CeCu$_2$Si$_2$

论文作者

Amorese, Andrea, Marino, Andrea, Sundermann, Martin, Chen, Kai, Hu, Zhiwei, Willers, Thomas, Choukani, Fadi, Ohresser, Philippe, Herrero-Martin, Javier, Agrestini, Stefano, Chen, Chien-Te, Lin, Hong-Ji, Haverkort, Maurits W., Seiro, Silvia, Geibel, Christoph, Steglich, Frank, Tjeng, Liu Hao, Zwicknagl, Gertrud, Severing, Andrea

论文摘要

CECU $ _2 $ si $ _2 $的水晶场基态波函数已通过线性偏振$ m $ - 边缘X射线吸收光谱从250MK到250K进行了研究,因此涵盖了超导($ t _ {\ text {\ text {c} $ = 0.6K),kondo ($ t _ {\ text {k}} $ \ $ 20k)以及居里 - 韦斯式制度。与全脂计算的比较表明,实验线性二色性的温度依赖性通过$γ_7^{(1)} $晶体场地面状态和激发态的热量在30mev左右很好地解释。晶体场方案在整个温度范围内不会变化,因此使轨道切换的情况不太可能。 CE 4 $ f^0 $配置在基态下存在的光谱证据与基态多轨特征的可能性一致。我们从近托温度和晶体场分裂能量估计,较高的lise $γ_6$状态和$γ_7^{(2)} $ Crystal-Field状态的几个percents主要混合到$γ_7^{(1)} $基础状态。该估计值还通过使用实验确定的晶体场方案的重新归一化的带结构计算支持。

The crystal-field ground state wave function of CeCu$_2$Si$_2$ has been investigated with linear polarized $M$-edge x-ray absorption spectroscopy from 250mK to 250K, thus covering the superconducting ($T_{\text{c}}$=0.6K), the Kondo ($T_{\text{K}}$$\approx$20K) as well as the Curie-Weiss regime. The comparison with full-multiplet calculations shows that the temperature dependence of the experimental linear dichroism is well explained with a $Γ_7^{(1)}$ crystal-field ground-state and the thermal population of excited states at around 30meV. The crystal-field scheme does not change throughout the entire temperature range thus making the scenario of orbital switching unlikely. Spectroscopic evidence for the presence of the Ce 4$f^0$ configuration in the ground state is consistent with the possibility for a multi-orbital character of the ground state. We estimate from the Kondo temperature and crystal-field splitting energies that several percents of the higher lying $Γ_6$ state and $Γ_7^{(2)}$ crystal-field states are mixed into the primarily $Γ_7^{(1)}$ ground state. This estimate is also supported by re-normalized band-structure calculations that uses the experimentally determined crystal-field scheme.

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