Guo Lab

Max Planck Society

Bayern (DE2) · Germany

ERC-funded
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ERC Starting Grant · 2024

Force-free microstructures host intrinsic dynamics of orbital phases in AV3Sb5 Kagome metals

Electron correlations significantly modify electron self-organization in quantum materials, resulting in a landscape of competing orders and exotic quantum phenomena. The recently discovered AV3Sb5 family Kagome superconductors is an intriguing example of competing correlated orders with robust entanglement, as manipulating one order can affect or modify another, akin to the unique electromagnetic responses of multi-ferroics. These strongly entangled orders have led to an exciting hypothesis of orbital loop current, a prime example of correlation-driven electronic instabilities. Nevertheless, it renders the inherent characteristics practically inaccessible through conventional means, as…

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