Hexagonal-to-base-centered-orthorhombic charge density wave order in kagome metals KVSb, RbVSb, and CsVSb
arXiv:2108.07784 · doi:10.1103/PhysRevMaterials.6.015001
Abstract
I search for the ground state structures of the kagome metals KVSb, RbVSb, and CsVSb using first principles calculations. Group-theoretical analysis shows that there are seventeen different distortions that are possible due to the phonon instabilities at the and points in the Brilouin zone of the parent phase of these materials. I generated these structures for the three compounds and performed full structural relaxations that minimize the atomic forces and lattice stresses. I find that the phase with the order parameter has the lowest energy among these possibilities in all three compounds. However, the exhibits a dynamical instability at its point, which corresponds to the point in the parent phase. Condensation of this instability leads to a base-centered orthorhombic structure with the space group and order parameter .
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