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基于铬的 Kagome 超导体中的自旋激发与平坦电子能带

Spin excitations and flat electronic bands in a Cr-based kagome superconductor.

作者信息

Wang Zehao, Guo Yucheng, Huang Hsiao-Yu, Xie Fang, Huang Yuefei, Gao Bin, Oh Ji Seop, Wu Han, Okamoto Jun, Channagowdra Ganesha, Chen Chien-Te, Ye Feng, Lu Xingye, Liu Zhaoyu, Ren Zheng, Fang Yuan, Wang Yiming, Biswas Ananya, Zhang Yichen, Yue Ziqin, Hu Cheng, Jozwiak Chris, Bostwick Aaron, Rotenberg Eli, Hashimoto Makoto, Lu Donghui, Kono Junichiro, Chu Jiun-Haw, Yakobson Boris I, Birgeneau Robert J, Cao Guang-Han, Fujimori Atsushi, Huang Di-Jing, Si Qimiao, Yi Ming, Dai Pengcheng

机构信息

Department of Physics and Astronomy, Rice University, Houston, USA.

National Synchrotron Radiation Research Center, Hsinchu, Taiwan.

出版信息

Nat Commun. 2025 Aug 14;16(1):7573. doi: 10.1038/s41467-025-62298-5.

Abstract

In the quest for topology- and correlation-driven quantum states, kagome lattice materials have garnered significant interest for their band structures, featuring flat bands (FBs) from the quantum destructive interference of the electronic wavefunction. Tuning an FB to the chemical potential could induce electronic instabilities and emergent orders. Despite extensive studies, direct evidence of FBs tuned to the chemical potential and their role in emergent orders in bulk materials remains lacking. Using angle-resolved photoemission spectroscopy, resonant inelastic X-ray scattering, and density functional theory, we show that the low-energy structure of the Cr-based kagome metal superconductor CsCrSb is dominated by FBs at the Fermi level. We also observe low-energy magnetic excitations evolving across the low-temperature transition, largely consistent with the FB shift. Our results suggest that the low-temperature order contains a magnetic origin and that the kagome FBs may play a role in the emergence of this order.

摘要

在对拓扑和关联驱动的量子态的探索中, Kagome晶格材料因其能带结构而备受关注,其能带结构具有由电子波函数的量子相消干涉产生的平带(FBs)。将一个FB调谐到化学势可能会引发电子不稳定性和涌现序。尽管进行了广泛的研究,但仍缺乏将FBs调谐到化学势的直接证据及其在块体材料涌现序中的作用。利用角分辨光电子能谱、共振非弹性X射线散射和密度泛函理论,我们表明基于Cr的Kagome金属超导体CsCrSb的低能结构在费米能级处由FBs主导。我们还观察到在低温转变过程中低能磁激发的演变,这在很大程度上与FB的移动一致。我们的结果表明,低温序具有磁起源,并且Kagome FBs可能在这种序的出现中发挥作用。

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