The spin gap in malachite Cu2(OH)2CO3 and its evolution under pressure
arXiv:1308.4866 · doi:10.1103/PhysRevB.88.224406
Abstract
We report on the microscopic magnetic modeling of the spin-1/2 copper mineral malachite at ambient and elevated pressures. Despite the layered crystal structure of this mineral, the ambient-pressure susceptibility and magnetization data can be well described by an unfrustrated quasi-one-dimensional magnetic model. Weakly interacting antiferromagnetic alternating spin chains are responsible for a large spin gap of 120K. Although the intradimer Cu-O-Cu bridging angles are considerably smaller than the interdimer angles, density functional theory (DFT) calculations revealed that the largest exchange coupling of 190K operates within the structural dimers. The lack of the inversion symmetry in the exchange pathways gives rise to sizable Dzyaloshinskii-Moriya interactions which were estimated by full-relativistic DFT+U calculations. Based on available high-pressure crystal structures, we investigate the exchange couplings under pressure and make predictions for the evolution of the spin gap. The calculations evidence that intradimer couplings are strongly pressure-dependent and their evolution underlies the decrease of the spin gap under pressure. Finally, we assess the accuracy of hydrogen positions determined by structural relaxation within DFT and put forward this computational method as a viable alternative to elaborate experiments.
References in corpus (17)
- The ALPS project release 1.3: open source software for strongly correlated systems
- Generalized Directed Loop Method for Quantum Monte Carlo Simulations
- Dynamic Scaling in the Susceptibility of the Spin-1\2 Kagome Lattice Antiferromagnet Herbertsmithite
- Nature of the spin dynamics and 1/3 magnetization plateau in azurite
- beta-Cu2V2O7: a spin-1/2 honeycomb lattice system
- Bridging frustrated-spin-chain and spin-ladder physics: quasi-one-dimensional magnetism of BiCu2PO6
- Structural and magnetic dimers in the spin-gapped system CuTe2O5
- SrCu(PO): A real material realization of the 1D nearest neighbor Heisenberg chain
- Uniform and staggered magnetizations induced by Dzyaloshinskii-Moriya interactions in isolated and coupled spin 1/2 dimers in a magnetic field
- Peculiar long-range superexchange in Cu2A2O7 (A = P, As, V) as a key element of the microscopic magnetic model
- Coupled frustrated quantum spin-1/2 chains with orbital order in volborthite Cu3V2O7(OH)2(H2O)2
- Spin Configuration in the 1/3 Magnetization Plateau of Azurite Determined by NMR
- Large quantum fluctuations in the strongly coupled spin-1/2 chains of green dioptase: a hidden message from birds and trees
- Incommensurate dynamic correlations in the quasi-two-dimensional spin liquid BiCu2PO6
- Square-lattice magnetism of diaboleite Pb2Cu(OH)4Cl2
- Two energy scales of spin dimers in clinoclase Cu3(AsO4)(OH)3
- Magnetoelastic and structural properties of azurite Cu3(CO3)2(OH)2 from neutron scattering and muon spin rotation
Cited by in corpus (19)
- Quantum Magnetism in Minerals
- Frustration and Dzyaloshinsky-Moriya anisotropy in the kagome francisites CuBi(SeOOX
- Quasi-two-dimensional magnetism of Cu[CH(COO)][CHNH]
- Frustrated spin chain physics near the Majumdar-Ghosh point in szenicsite Cu(MoO)(OH)
- Quasi-one-dimensional magnetism in the spin- antiferromagnet BaNaCu(VO)
- Frustration of square cupola in Sr(TiO)Cu(PO)
- Nearly compensated exchange in the dimer compound callaghanite CuMg(CO)(OH)2HO
- Collinear order in a frustrated three-dimensional spin- antiferromagnet LiCuWO
- The magnetic phase diagram of the frustrated spin chain compound linarite, PbCuSO(OH), as seen by neutron diffraction and H-NMR
- Low-dimensional magnetism of BaCuTeO
- Collinear Spin-density-wave Order and Anisotropic Spin Fluctuations in the Frustrated -- Chain Magnet NaCuMoO(OH)
- Highly dispersive magnons with spin-gap like features in the frustrated ferromagnetic S=1/2 chain compound Ca2Y2Cu5O10 detected by inelastic neutron scattering
- The origin of up-up-down-down magnetic order in CuGeO
- Frustrated magnetic planes with intricate interaction pathways in the mineral langite Cu(OH)SOHO
- Entanglement and quantum correlations in the XX spin- honeycomb lattice
- Role of electronic excitation on the anomalous magnetism of elemental Copper
- Spin excitations in the two-dimensional strongly coupled dimer system malachite
- Kondo-like behavior in a mixed valent oxypnictide
- Pressure-tuned spin chains in brochantite, CuSO(OH)