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Magnetism and weak electronic correlations in Kagome metal ScV₆Sn₆

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arxiv 2412.12908 v1 pith:6SL7JRYR submitted 2024-12-17 cond-mat.str-el physics.comp-ph

Magnetism and weak electronic correlations in Kagome metal ScV$_6$Sn$_6$

classification cond-mat.str-el physics.comp-ph
keywords phasecorrelationcorrelationsdensityelectronicenhancementsfermikagome
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

As one class of typical quantum materials, Kagome metals in $A$V$_3$Sb$_5$($A$ = K, Rb, Cs) have attracted extensive attentions due to their interesting physical properties and different quantum phases of charge density wave (CDW), superconductivity and nontrivial topology. Recently, a new CDW phase in ScV$_6$Sn$_6$ was experimentally observed and inspired a wide study of the mechanism of driving force. To have a clear understanding of the correlation effect in the CDW phase in ScV$_6$Sn$_6$, we performed a systematic density functional theory plus dynamical mean field theory (DFT + DMFT) calculations. The resulting static local spin susceptibility is nearly independent of temperature, indicating the absence of local moment on atom V, in full agreement with experimental measurements. The mass enhancements of quasiparticles and bandwidth renormalizations near the Fermi level show a weak correlation strength in ScV$_6$Sn$_6$. In addition, the comparable mass enhancements of quasiparticles in ScV$_6$Sn$_6$ with CDW order and YV$_6$Sn$_6$ without CDW phase suggests that electronic correlations corresponding to Fermi surface nesting do not play the dominant role in the formation of CDW order in ScV$_6$Sn$_6$.

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