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- W4386722114 abstract "Kagome magnets provide a fascinating platform for the realization of correlated topological quantum phases under various magnetic ground states. However, the intricate effect of the magnetic spin configurations on the characteristic electronic structure directly from the kagome lattice layer remains still elusive. Here, utilizing angle-resolved photoemission spectroscopy and density functional theory calculations, we report the spectroscopic evidence for the spin-reorientation effect of a kagome ferromagnet Fe$_3$Ge, which is composed only of the kagome planes. There are two kinds of kagome-derived Dirac fermions due to the structural three-dimensionality -- one is less dispersive ($k_z$ $sim$ 0) and the other disperses linearly ($k_z$ $sim$ $pi$). As the Fe moments cant from the $c$ axis into the $ab$ plane upon cooling, the Dirac fermion in $k_z$ $sim$ 0 plane with a mixture of the Fe-$3d_{xy}$ and Fe-$3d_{x^2-y^2}$ components evolves from gapped into nearly gapless, while the Dirac cone in $k_z$ $sim$ $pi$ plane mainly of the Fe-$3d_{x^2-y^2}$ orbital character remains intact, suggesting that the effect of spin reorientation on the Dirac fermions has an orbital selectivity. Our unambiguous observations provide a feasible route to design and manipulate the mass of Dirac fermions for realizing the novel quantum phases. We also perform comparative studies between the non-charge-ordered Fe$_3$Ge and its sibling compound FeGe, a newly established charge-density-wave kagome magnet, the results suggest that the orbital-selective van Hove singularities near the Fermi level play an indispensable part in driving the charge order on a magnetic kagome lattice." @default.
- W4386722114 created "2023-09-14" @default.
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- W4386722114 date "2023-09-12" @default.
- W4386722114 modified "2023-09-26" @default.
- W4386722114 title "Orbital-selective effect of spin reorientation on the Dirac fermions in a three-dimensional kagome ferromagnet Fe$_3$Ge" @default.
- W4386722114 doi "https://doi.org/10.48550/arxiv.2309.06399" @default.
- W4386722114 hasPublicationYear "2023" @default.
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