Colossal -Axis Response and Lack of Rotational Symmetry Breaking within the Kagome Planes of the Superconductor

M Frachet, L Wang, W Xia, Y Guo, M He, N Maraytta… - Physical Review Letters, 2024 - APS
The kagome materials AV 3 Sb 5 (A= K, Rb, Cs) host an intriguing interplay between
unconventional superconductivity and charge-density waves. Here, we investigate CsV 3 Sb …

Topological electronic structure and electronic nematicity in candidate kagome superconductors, ATi3Bi5 (A= Rb, Cs)

Y Hu, C Le, X Wu, M Shi - Superconductor Science and …, 2024 - iopscience.iop.org
The newly discovered family of titanium-based kagome metals, ATi 3 Bi 5 (where A can be
Rb or Cs), has been found to exhibit non-trivial band topology and fascinating electronic …

Correlated order at the tipping point in the kagome metal CsV3Sb5

C Guo, G Wagner, C Putzke, D Chen, K Wang… - Nature Physics, 2024 - nature.com
Spontaneously broken symmetries are at the heart of many phenomena of quantum matter
and physics more generally. However, determining the exact symmetries that are broken …

Low temperature phase transitions inside the CDW phase in the kagome metals : Significance of mixed-type Fermi surface electron correlations

J Huang, R Tazai, Y Yamakawa, S Onari, H Kontani - Physical Review B, 2024 - APS
To understand the multistage phase transitions in V-based kagome metals inside the charge-
density-wave (CDW) phase, we focus on the impact of the “mixed-type” Fermi surface …

Nanoscale strain manipulation of smectic susceptibility in kagome superconductors

Y Wang, H Li, S Cheng, H Zhao, BR Ortiz… - arXiv preprint arXiv …, 2023 - arxiv.org
Exotic quantum solids can host electronic states that spontaneously break rotational
symmetry of the electronic structure, such as electronic nematic phases and unidirectional …

[PDF][PDF] Intertwined charge-density-wave order in vanadium-based kagome superconductors

T Wu, K Sun, L Nie, H Li, J Zhao, H Rao, F Yu, M Shi… - 2024 - scholar.archive.org
In correlated quantum materials, the intertwinement of multiple orders leads to rich exotic
quantum states of matter and emergent phenomena. Recently, the discovery of …