Two distinct nematic orders coexist in CsV3Sb5 with different directors at intermediate doping, one CDW-linked and one orbital-based, persisting to high temperatures and doping where CDW vanishes.
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Theoretical modeling finds that dilute impurities in the loop-current phase of kagome metals generate switchable chiral QPI signals whose chirality tracks the Z3 nematicity set by loop-current order relative to the star-of-David CDW.
citing papers explorer
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Visualizing the interplay of dual electronic nematicities in kagome superconductors
Two distinct nematic orders coexist in CsV3Sb5 with different directors at intermediate doping, one CDW-linked and one orbital-based, persisting to high temperatures and doping where CDW vanishes.
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Origin of switchable quasiparticle-interference chirality in loop-current phase of kagome metals measured by scanning-tunneling-microscopy
Theoretical modeling finds that dilute impurities in the loop-current phase of kagome metals generate switchable chiral QPI signals whose chirality tracks the Z3 nematicity set by loop-current order relative to the star-of-David CDW.