Exchange interactions in europium monochalcogenide magnetic semiconductors and their dependence on hydrostatic strain
arXiv:0907.3836 · doi:10.1103/PhysRevB.81.155213
Abstract
The classical Heisenberg model is applied in a Monte Carlo study to investigate the distance dependence of the indirect nearest neighbor (NN) exchange and next-nearest neighbor (NNN) superexchange interaction in EuO, EuS, EuSe and EuTe. For this purpose, first, the dependence of the magnetic ordering temperature, i.e., Curie, respectively, Néel temperature for ferromagnetic and antiferromagnetic ordering on the exchange constants was determined. This was then employed for the analysis of experimental data of hydrostatic pressure experiments. It is shown that all experimental findings, i.e., the strong increase of the critical temperatures, as well as the transition from antiferromagnetic to ferromagnetic ordering for EuTe and EuSe with decreasing lattice parameter is well described by the magnetic Grüneisen law, in which the exchange constants depend on the interatomic distances of the Eu ions in the form of a power law. According to these calculations, the indirect NN exchange is characterized by a Grüneisen exponent of approximately 20 and the NNN superexchange by an exponent of about 10 for all four europium monochalcogenides. The latter agrees with Bloch's empirical 10/3 law for the volume dependence of superexchange interactions in insulating magnetic materials. The Monte Carlo calculations also yield significantly revised exchange constants for unstrained bulk material because spin fluctuations at non-zero temperatures are taken into account. The strong increase of the exchange constants with decreasing lattice parameter provides room for increasing the Curie temperatures in strained epitaxial structures, which is important for device applications.
16 pages, 12 figures
References in corpus (4)
- Epitaxial influence on the ferromagnetic semiconducotor EuO
- Enhanced magneto-transport at high bias in quasi-magnetic tunnel junctions with EuS spin-filter barriers
- Soft x-ray magnetic circular dichroism study on Gd-doped EuO thin films
- Pressure-induced electronic mixing and enhancement of ferromagnetic ordering in EuX (X=Te, Se, S, O) magnetic semiconductors
Cited by in corpus (14)
- Thermomagnonic spin transfer and Peltier effects in insulating magnets
- Electronic Structure Calculations of Magnetic Exchange Interactions in Europium Monochalcogenides
- Spin-dependent optical response of multiferroic EuO
- Superconductivity near a magnetic domain wall
- Absence of Magnetic Fluctuations in the Ferromagnetic/Topological Heterostructure EuS/BiSe
- Nonlinear pressure dependence of T_N in almost multiferroic EuTiO_3
- Ultrafast light switching of ferromagnetism in EuSe
- Thermodynamic model of a solid with RKKY interaction and magnetoelastic coupling
- Self-consistent model of a solid for the description of lattice and magnetic properties
- Order-by-disorder effects in antiferromagnets on face-centered cubic lattice
- Temperature-dependent spin-resolved electronic structure of EuO thin films
- Search for enhanced magnetism at the interface between BiSe and EuSe
- Quantum degradation of the second order phase transition
- Growth of EuO single crystals at reduced temperatures