Spin-lattice-coupled helical magnetic order in breathing pyrochlore magnets, CuAlCrS and CuGaCrS
arXiv:2405.05108
Abstract
We report low-temperature powder X-ray and neutron diffraction studies on breathing pyrochlore magnets CuCrS ( = Al, Ga), which undergo a magnetic transition at 21 and 31 K for { = Al and Ga, respectively. X-ray diffraction reveals that the magnetic transition accompanies a structural transition from cubic to polar orthorhombic symmetry for both the compounds, with larger distortion observed for = Ga at low temperatures. Neutron diffraction reveals incommensurate magnetic modulation in the orthorhombic setting, where 0.39 and 0.31 for = Al and Ga, respectively. Our magnetic-structure analysis suggests cycloid-type magnetic order but not proper-screw type for both the compounds. We find strong correlation between the local spin configuration and Cr-Cr bond lengths, indicating that the spin-lattice coupling as well as the magnetic frustration play an important role in determining the ground state. CuCrS potentially offers a platform to explore magnetoelectric effects arising from the helimagnet driven electric polarity.
8 pages, 6 figures, 5 tables