Possible Bose-Einstein condensation of magnons in a S = 5/2 honeycomb lattice
arXiv:2510.12682 · doi:10.1103/8wdy-2zbw
Abstract
Quantum magnets offer a unique platform for exploring exotic quantum phases and quantum phase transitions through external magnetic fields. A prominent example is the field-induced Bose--Einstein condensation (BEC) of magnons near the saturation field. While this behavior has been observed in low-spin systems, its realization in high-spin, quasi-two-dimensional magnets -- where multiple on-site excitations are possible -- remains exceptionally rare. Here, we report thermodynamic and density functional theory results on single crystals of the honeycomb-lattice antiferromagnet KMnMoO with . The system undergoes a field-induced transition to a fully polarized state at the critical field ~T. Our results reveal possible thermodynamic signatures of magnon BEC, (), expanding the purview of BEC-driven quantum criticality to a high-spin, quasi-two-dimensional antiferromagnets with negligibly small anisotropy.
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