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Your search keyword '"FERRIMAGNETIC materials"' showing total 18 results
18 results on '"FERRIMAGNETIC materials"'

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1. Compensation temperatures and hysteresis loops of the ferrimagnetic bilayer kagome lattice with RKKY interaction.

2. Dielectric properties of an antiferroelectric/ferroelectric BiFeO3/Co bilayer structure.

3. The effect of a random transverse field on the critical and compensation behaviors of a nanowire.

4. Insights into magnetic behaviors of an Ising graphene ladder-type chain structure applied in an external magnetic field.

5. Phase diagrams and magnetic properties of ferrimagnetic mixed spin-[formula omitted] and spin-[formula omitted] Ising nanowire.

6. Ising nanowires with simple core–shell structure; Their characteristic phenomena.

7. Phase diagrams and compensation behaviors of a mixed Spin-(3/2, 1) Ising-Type Ferrimagnet: Monte Carlo investigation.

8. Monte Carlo study of magnetic properties and critical behavior of Sr2CrMoO6.

9. Dynamic phase diagrams of a ferrimagnetic mixed spin (1/2, 1) Ising system within the path probability method.

10. Existence of a dynamic compensation temperature of the mixed spin-1 and spin-3/2 Ising model within the effective-field theory.

11. The phase diagrams and the magnetic properties of a ferrimagnetic mixed spin 1/2 and spin 1 Ising nanowire.

12. Phase diagrams and magnetic properties of a ferrimagnetic cylindrical core/shell spin-1 Ising nanowire.

13. Phase diagram of the mixed spin-2 and spin- Ising system with two different single-ion anisotropies.

14. Magnetic properties of the ferrimagnetic triangular nanotube with core–shell structure: A Monte Carlo study.

15. Magnetic and thermodynamic behaviors of the graphene-like quantum dots: A Monte Carlo study.

16. Dynamic phase of transitions of the mixed spin (1/2, 3/2) Ising model in the presence of a time-varying magnetic field by using the path probability method.

17. Cluster size effects in the magnetic properties of [formula omitted]-[formula omitted] alloys.

18. Magnetic properties of an Ising ladder-like graphene nanoribbon by using Monte Carlo method.

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