Magnetic and thermodynamic properties of the octanuclear nickel phosphonate-based cage
arXiv:1908.03614 · doi:10.1016/j.physa.2019.122841
Abstract
We report a detailed theoretical investigation into the influence of anisotropy on the magnetic and thermodynamic properties of an octanuclear nickel phosphonate cage with butterfly-shaped molecular geometry, namely . To validate our exact diagonalization approach, we firstly compare results with simulations and experiment in the isotropic case. Having established concurrence, we then introduce uniaxial single-ion anisotropy and Heisenberg exchange anisotropy between interacted nickel atoms. We then examine effects of both anisotropy parameters on the magnetization process, as well as on the specific heat of the model. We predict intermediate magnetization plateaus, including zero plateau, and magnetization jumps with magnetic ground-state phase transitions at low temperature K. The magnetization plateaus are strongly dependent on both the levels of exchange anisotropy and single-ion anisotropy. Varying the former leads to change in width and magnetic position of all intermediate plateaus while they become wider upon increasing the latter. The specific heat of the model manifests a Schottky-type maximum at moderate temperature in the presence of weak magnetic fields, when the system is isotropic. The introducion of aniostropy results in substantial variations in the thermal behavior of the specific heat. Indeed, by tuning anisotropy parameters the Schottky peak convert to a double-peak temperature dependence that coincided with the magnetization jumps. We call for these theoretical predictions to be verified experimentally at low temperature.
16 pages, 4 figures
References in corpus (12)
- The ALPS project release 1.3: open source software for strongly correlated systems
- Quantum discord and quantum phase transition in spin chains
- Topological characterization of quantum phase transitions in a S=1/2 spin model
- Thermal entanglement in exactly solvable Ising-XXZ diamond chain structure
- Magnetism and Thermodynamics of Spin-1/2 Heisenberg Diamond Chains in a Magnetic Field
- Phase diagram of the asymmetric tetrahedral Ising-Heisenberg chain
- Enhanced magnetocaloric effect in a proximity of magnetization steps and jumps of spin-1/2 XXZ Heisenberg regular polyhedra
- Diamond chains with multiple-spin exchange interactions
- Entanglement, magnetic and quadrupole moments properties of the mixed spin Ising-Heisenberg diamond chain
- Quantum phases of frustrated 2-leg spin-1/2 ladders with skewed rungs
- Phase transitions and thermal entanglement of the distorted Ising-Heisenberg spin chain: topology of multiple-spin exchange interactions in spin ladders
- Quantum phases of dimerized and frustrated Heisenberg spin chains with s = 1/2, 1 and 3/2: an entanglement entropy and fidelity study