The Magnetic Ground State of Atacamite CuCl(OH): The Crucial Role of Frustrated Zigzag Chains Revealed by Inelastic Neutron Scattering
arXiv:2508.02201 · doi:10.1103/lj8j-215g
Abstract
We report inelastic neutron scattering (INS) measurements on the magnetically frustrated sawtooth-chain compound atacamite CuCl(OH) featuring inequivalent Cu(1) and Cu(2) sites. Transverse to the sawtooth chains, INS reveals two dispersive spin-wave modes and a gap of at least 0.75 meV. This behavior is rationalized within a zigzag-chain model of Cu(2) spins in an effective magnetic field of Cu(1) spins. The model is compatible with first-principles calculations and accounts for INS dispersions within linear spin-wave theory calculations. Our results reveal a unique case of an effective separation of energy scales between two differently oriented one-dimensional chains, with the zigzag-chain model being essential to fully characterize atacamite's low-energy magnetism.
Main: 7 pages, 5 figures. Supplemental: 13 pages, 11 figures
References in corpus (8)
- Exact low-temperature behavior of kagome antiferromagnet at high fields
- Correlation functions and excitation spectrum of the frustrated ferromagnetic spin-1/2 chain in an external magnetic field
- Spin phonon coupling in frustrated magnet CdCrO
- The dynamics of linarite: Observations of magnetic excitations
- Enhancement of magnetization plateaus in low dimensional spin systems
- Spinon excitation spectra of the - chain from analytical calculations in the dimer basis and exact diagonalization
- Atacamite CuCl(OH) in High Magnetic Fields: Quantum Criticality and Dimensional Reduction of a Sawtooth-Chain Compound
- Low-energy spin excitations of the frustrated ferromagnetic - chain material linarite, PbCuSO(OH), in applied magnetic fields axis