Field-Angle-Resolved Specific Heat in NaCoTeO: Evidence against Kitaev Quantum Spin Liquid
arXiv:2410.18449 · doi:10.1103/PhysRevLett.134.106701
Abstract
Kitaev quantum spin liquids (KSLs) in layered honeycomb magnets are known to host Majorana quasiparticles, whose excitations depend strongly on the direction of the applied magnetic field. In the high-field phase of -RuCl, specific heat measurements have revealed characteristic field-angle dependence of low-energy excitations consistent with the Kitaev model, providing bulk evidence for the KSL state. Here we present low-temperature measurements of specific heat for another KSL candidate (NCTO) under field rotation within the honeycomb plane. Above the critical field of antiferromagnetic order, the field-angle dependence of exhibits minima along the bond directions, contrasting with the maxima observed in the KSL state of -RuCl. Our analysis indicates nodeless, fully-gapped excitations, which are inconsistent with the angle-dependent Majorana excitations with gapless nodes predicted by the Kitaev model. These findings suggest that low-energy excitations in NCTO are governed by gapped magnon excitations rather than Majorana quasiparticles, providing thermodynamic evidence against a KSL state.
6 pages, 4 figures
References in corpus (20)
- Mott Insulators in the Strong Spin-Orbit Coupling Limit: From Heisenberg to a Quantum Compass and Kitaev Models
- Successive magnetic phase transitions in -RuCl: XY-like frustrated magnet on the honeycomb lattice
- Pseudospin exchange interactions in d^7 cobalt compounds: Possible realization of the Kitaev model
- Spin-wave excitations evidencing the Kitaev interaction in single crystalline -RuCl
- Kitaev-Heisenberg Hamiltonian for High-Spin Mott Insulators
- Anisotropic Ru3+ 4d5 magnetism in the alpha-RuCl3 honeycomb system: susceptibility, specific heat and Zero field NMR
- Robustness of the thermal Hall effect close to half-quantization in a field-induced spin liquid state
- The planar thermal Hall conductivity in the Kitaev magnet α-RuCl3
- Kitaev interactions in the Co honeycomb antiferromagnets NaCoSbO and NaCoTeO
- Magnetic properties of the honeycomb oxide NaCoTeO
- Zigzag antiferromagnetic ground state with anisotropic correlation lengths in the quasi-2D honeycomb lattice compound Na2Co2TeO6
- Evidence of a Phonon Hall Effect in the Kitaev Spin Liquid Candidate -RuCl
- Topological magnons for thermal Hall transport in frustrated magnets with bond-dependent interactions
- Magnetic ground state of the Kitaev NaCoTeO spin liquid candidate
- Unusual heat transport of the Kitaev material NaCoTeO: putative quantum spin liquid and low-energy spin excitations
- Non-Kitaev vs. Kitaev Honeycomb Cobaltates
- Triple-q order in NaCoTeO from proximity to hidden-SU(2)-symmetric point
- Planar Thermal Hall Effects in Kitaev Spin Liquid Candidate Na2Co2TeO6
- Majorana-fermion origin of the planar thermal Hall effect in the Kitaev magnet -RuCl
- Field-angle dependence of thermal Hall conductivity in magnetically ordered Kitaev-Heisenberg system
Cited by in corpus (5)
- Kitaev Quantum Spin Liquids
- Bulk excitations in ultraclean -RuCl: Quantitative evidence for Majorana dispersions in a Kitaev quantum spin liquid
- Anisotropic magnetoelastic coupling in the honeycomb magnet NaCoSbO
- Vector pulse magnet
- Dominant Kitaev Interaction and Field-induced Quantum Disordered Phase in the Cobaltate NaCoTeO