Magnetic Properties of Metal Dichalcogenide in the Frame of Heisenberg-Like Model: DFT and Monte-Carlo Methods

We study magnetism in the 2D magnets with a <span class="mathjax-tex">\(d\)</span>-metal sub-lattice based on the density functional theory and Monte-Carlo simulations. The phenomena of ligand field and the macroscopic nature of <span class="mathjax-tex">\(p{\text{-}}d\)</span> orbitals hybridization has been discussed widely. For a magnetism in the 2D materials with a honeycomb and hexagonal <span class="mathjax-tex">\(d\)</span>-metal sub-latices we derive an effective Hamiltonian for a spin subsystem with and without inclusion next nearest-neighbors interaction and higher-order terms. Based on the proposed models critical temperature <span class="mathjax-tex">\({{T}_{{\text{C}}}}\)</span> for a wide range of compounds estimated.

Authors
Kartsev A.I. 1, 2, 3 , Obraztsov K.V. 1 , Lega P.V. 2, 3, 4
Issue number
10
Language
English
Pages
1169-1190
State
Published
Volume
68
Year
2023
Organizations
  • 1 Computing Center of the Far Eastern Branch of the Russian Academy of Sciences Kim Yu Chen Str., 65
  • 2 Peoples’ Friendship University of Russia (RUDN University)
  • 3 Bauman Moscow State Technical University
  • 4 Kotelnikov Institute of Radioengineering and Electronics, Russian Academy of Sciences
Keywords
Communications Engineering; networks
Share

Other records