A Holographic Realization of Ferromagnets
arXiv:1508.01626 · doi:10.1103/PhysRevD.93.026002
Abstract
A holographic realization for ferromagnetic systems has been constructed. Owing to the holographic dictionary proposed on the basis of this realization, we obtained relevant thermodynamic quantities such as magnetization, magnetic susceptibility, and free energy. This holographic model reproduces the behavior of the mean field theory near the critical temperature. At low temperatures, the results automatically incorporate the contributions from spin wave excitations and conduction electrons.
11 pages, 5 figures
References in corpus (6)
- Building an AdS/CFT superconductor
- Colorful horizons with charge in anti-de Sitter space
- A holographic view on physics out of equilibrium
- Paramagnetism-Ferromagnetism Phase Transition in a Dyonic Black Hole
- A Note on Holographic Non-Relativistic Goldstone Bosons
- Massive -form field and holographic ferromagnetic phase transition
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- Magnetization Dynamics in Holographic Ferromagnets: Landau-Lifshitz Equation from Yang-Mills Fields
- Holographic Cosmology and Phase Transitions of SYM theory
- Gravitational realization of magnons in a ferromagnetic spin chain