Rahn M C, Kummer K, Hariki A, Ahn K-H, Kuneš J, Amorese A, Denlinger J D, Lu D-H, Hashimoto M, Rienks E, Valvidares M, Haslbeck F, Byler D D, McClellan K J, Bauer E D, Zhu J X, Booth C H, Christianson A D, Lawrence J M, Ronning F, Janoschek M
Los Alamos National Laboratory, Los Alamos, NM, 87545, USA.
Institute for Solid State and Materials Physics, Technical University of Dresden, 01062, Dresden, Germany.
Nat Commun. 2022 Oct 17;13(1):6129. doi: 10.1038/s41467-022-33468-6.
Effective models focused on pertinent low-energy degrees of freedom have substantially contributed to our qualitative understanding of quantum materials. An iconic example, the Kondo model, was key to demonstrating that the rich phase diagrams of correlated metals originate from the interplay of localized and itinerant electrons. Modern electronic structure calculations suggest that to achieve quantitative material-specific models, accurate consideration of the crystal field and spin-orbit interactions is imperative. This poses the question of how local high-energy degrees of freedom become incorporated into a collective electronic state. Here, we use resonant inelastic x-ray scattering (RIXS) on CePd to clarify the fate of all relevant energy scales. We find that even spin-orbit excited states acquire pronounced momentum-dependence at low temperature-the telltale sign of hybridization with the underlying metallic state. Our results demonstrate how localized electronic degrees of freedom endow correlated metals with new properties, which is critical for a microscopic understanding of superconducting, electronic nematic, and topological states.
专注于相关低能自由度的有效模型极大地促进了我们对量子材料的定性理解。一个标志性的例子是近藤模型,它对于证明关联金属丰富的相图源于局域电子和巡游电子的相互作用至关重要。现代电子结构计算表明,要实现特定材料的定量模型,必须准确考虑晶体场和自旋轨道相互作用。这就提出了一个问题,即局部高能自由度是如何纳入集体电子态的。在这里,我们利用对CePd的共振非弹性X射线散射(RIXS)来阐明所有相关能量尺度的命运。我们发现,即使是自旋轨道激发态在低温下也会获得明显的动量依赖性——这是与底层金属态杂化的明显迹象。我们的结果表明了局域电子自由度如何赋予关联金属新的性质,这对于从微观上理解超导、电子向列相和拓扑态至关重要。