paper

Zoology of Altermagnetic-type Non-collinear Magnets on the Maple Leaf Lattice

arXiv:2601.16807

Abstract

We define unconventional non-collinear magnetic ground states on the maple leaf lattice (MLL) distinguished by the selective breaking or preservation of time reversal () and parity (). Depending on the nature of -breaking, linear spin-wave theory reveals momentum-dependent non-relativistic magnon spin splitting at different high symmetry points in the Brillouin zone. From a mean-field analysis of the Hubbard model at weak coupling, we reveal itinerant -preserving altermagnetic (AM)-type order, while we expect -broken canted- AM-type order at strong coupling. Our findings establish the MLL as a prime platform for exploring phase transitions and frustration phenomena emanating from competing non-collinear AM-type orders.

7 pages, 3 figures