Cluster rearrangement by chiral charge order in lacunar spinel GaNbSe
arXiv:2401.03803 · doi:10.1021/acs.chemmater.4c00118
Abstract
Transition-metal atoms with d electrons sometimes form clusters in crystals, which significantly affects the physical properties. Such a cluster formation frequently accompanies a change in the crystal system, leading to the presence of domains with different crystal orientations. In particular, the cubic symmetry is rarely retained after the cluster formation. Here, we identify a cubic-to-cubic phase transition in lacunar spinel GaNbSe, where the change in the lattice parameter is less than 0.0001%. Each Nb tetramer with seven 4d electrons is distorted into a Nb trimer and a Nb monomer induced by charge disproportionation among Nb ions. While the Nb trimer with six 4d electrons forms spin-singlets in the sigma-bonding orbitals for three Nb-Nb bonds, a localized S=1/2 spin remains on the Nb ion. Furthermore, a local electric dipole moment is induced along the three-fold rotation axis of each distorted tetramer by the cluster rearrangement. The electric dipole moments are regularly arranged to maintain the cubic symmetry, giving rise to chiral order.
24 pages, 4 figures, supporting information
References in corpus (4)
- High resolution magnetostriction measurements in pulsed magnetic fields using Fibre Bragg Gratings
- Direct experimental observation of the molecular Jeff=3/2 ground state in the lacunar spinel GaTa4Se8
- Regular-Triangle Trimer and Charge Order Preserving the Anderson Condition in the Pyrochlore Structure of CsWO
- Structural evolution and skyrmionic phase diagram of the lacunar spinel GaMoSe