论文标题

Fermion-Boson多体相互作用在沮丧的Kagome Paramagnet中

Fermion-boson many-body interplay in a frustrated kagome paramagnet

论文作者

Yin, J. -X., Shumiya, Nana, Mardanya, Sougata, Wang, Qi, Zhang, S. S., Tien, Hung-Ju, Multer, Daniel, Jiang, Yuxiao, Cheng, Guangming, Yao, Nan, Wu, Shangfei, Wu, Desheng, Deng, Liangzi, Ye, Zhipeng, He, Rui, Chang, Guoqing, Liu, Zhonghao, Jiang, Kun, Wang, Ziqiang, Neupert, Titus, Agarwal, Amit, Chang, Tay-Rong, Chu, Ching-Wu, Lei, Hechang, Hasan, M. Zahid

论文摘要

Kagome-NET出现在基本物理,材料,光子和冷原子系统的区域中,带有沮丧的费米子和玻色子激发。但是,很难找到一个研究费米子和骨气模式以了解其多体型相互作用的系统。在这里,我们使用最先进的扫描隧道显微镜和光谱法,以发现与分层kagome paramagnet中的不寻常的电子耦合到平面声子。我们的结果揭示了kagome结构以空前的原子分辨率,并观察到与费米表面附近的分散kagome电子相互作用的引人注目的骨气模式。在此模式能量上,费米子准粒子分散体表现出明显的重新归一化,并向玻色子发出了巨大的耦合。通过自我能力分析,第一原理计算和晶格振动模型的结合,我们提供了证据表明,这种模式来自几何沮丧的声子扁平波段,这是Kagome Electron Flat-Band的晶格类似物。我们的发现提供了电子激发中Kagome骨骼模式(平板声子)的第一个示例,以及与kagome-net材料中的典型自由度相互作用。

Kagome-net, appearing in areas of fundamental physics, materials, photonic and cold-atom systems, hosts frustrated fermionic and bosonic excitations. However, it is extremely rare to find a system to study both fermionic and bosonic modes to gain insights into their many-body interplay. Here we use state-of-the-art scanning tunneling microscopy and spectroscopy to discover unusual electronic coupling to flat-band phonons in a layered kagome paramagnet. Our results reveal the kagome structure with unprecedented atomic resolution and observe the striking bosonic mode interacting with dispersive kagome electrons near the Fermi surface. At this mode energy, the fermionic quasi-particle dispersion exhibits a pronounced renormalization, signaling a giant coupling to bosons. Through a combination of self-energy analysis, first-principles calculation, and a lattice vibration model, we present evidence that this mode arises from the geometrically frustrated phonon flat-band, which is the lattice analog of kagome electron flat-band. Our findings provide the first example of kagome bosonic mode (flat-band phonon) in electronic excitations and its strong interaction with fermionic degrees of freedom in kagome-net materials.

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