Thermodynamic and magnetocaloric properties of geometrically frustrated Ising nanoclusters
arXiv:1406.5626 · doi:10.1016/j.jmmm.2014.08.017
Abstract
Thermodynamic and magnetocaloric properties of geometrically frustrated Ising spin clusters of selected shapes and sizes are studied by exact enumeration. In the ground state the magnetization and the entropy show step-wise variations with an applied magnetic field. The number of steps, their widths and heights depend on the cluster shape and size. While the character of the magnetization plateau heights is always increasing, the entropy is not necessarily decreasing function of the field, as one would expect. For selected clusters showing some interesting ground-state properties, the calculations are extended to finite temperatures by exact enumeration of densities of states in the energy-magnetization space. In zero field the focus is laid on a peculiar behavior of some thermodynamic quantities, such as the entropy, the specific heat and the magnetic susceptibility. In finite fields various thermodynamic functions are studied in the temperature-field parameter plane and particular attention is paid to the cases showing an enhanced magnetocaloric effect. The exact results on the finite clusters are compared with the thermodynamic limit behavior obtained from Monte Carlo simulations.
23 pages, 16 figures
References in corpus (6)
- Enhanced magnetocaloric effect in frustrated magnets
- Magnetocaloric effect in one-dimensional antiferromagnets
- Enhanced magnetocaloric effect in frustrated magnetic molecules with icosahedral symmetry
- Magnetocaloric effect in two-dimensional spin-1/2 antiferromagnets
- Frustration effects in antiferromagnetic molecules: the cuboctahedron
- Phase Diagram of a Diluted Triangular Lattice Ising Antiferromagnet in a Field
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- Ground-state and magnetocaloric properties of a coupled spin-electron double-tetrahedral chain (exact study at the half filling)
- Magnetocaloric properties of frustrated tetrahedra-based spin nanoclusters
- Magnetocaloric and electrocaloric properties of the Hubbard pair cluster
- Enhancement of the Magnetocaloric Effect in Geometrically Frustrated Cluster Spin Glass Systems
- Magnetocaloric Effect in Two-Dimensional Diluted Ising Model: Appearance of Frustrations in the Ground State
- Ground-state magnetic properties of spin ladder-shaped quantum nanomagnet: Exact diagonalization study
- Effect of Single-ion Anisotropy on Magnetocaloric Properties of Frustrated Spin- Ising Nanoclusters