Triple-Point Fermions in Ferroelectric GeTe

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Abstract

Ferroelectric α-GeTe is unveiled to exhibit an intriguing multiple nontrivial topology of the electronic band structure due to the existence of triple-point and type-II Weyl fermions, which goes well beyond the giant Rashba spin splitting controlled by external fields as previously reported. Using spin- and angle-resolved photoemission spectroscopy combined with ab initio density functional theory, the unique spin texture around the triple point caused by the crossing of one spin-degenerate and two spin-split bands along the ferroelectric crystal axis is derived. This consistently reveals spin winding numbers that are coupled with time-reversal symmetry and Lorentz invariance, which are found to be equal for both triple-point pairs in the Brillouin zone. The rich manifold of effects opens up promising perspectives for studying nontrivial phenomena and multicomponent fermions in condensed matter systems.

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Krempaský, J., Nicolaï, L., Gmitra, M., Chen, H., Fanciulli, M., Guedes, E. B., … Dil, J. H. (2021). Triple-Point Fermions in Ferroelectric GeTe. Physical Review Letters, 126(20). https://doi.org/10.1103/PhysRevLett.126.206403

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