Opening book details…
Can I read Ferromagnetism in the one-dimensional Hubbard model with orbital degeneracy: From low to high electron density on EtoBox?
Ferromagnetism in the one-dimensional Hubbard model with orbital degeneracy: From low to high electron density by Sakamoto, Harumi; Momoi, Tsutomu; Kubo, Kenn is a scholarly article available to read on EtoBox.
What is Ferromagnetism in the one-dimensional Hubbard model with orbital degeneracy: From low to high electron density about?
We studied ferromagnetism in the one-dimensional Hubbard model with doubly degenerate atomic orbitals by means of the density-matrix renormalization-group method and obtained the ground-state phase diagrams. It was found that ferromagnetism is stable from low to high (0< n < 1.75) electron density when the interactions are sufficiently strong. Quasi-long-range order of triplet superconductivity coexists with the ferromagnetic order for a strong Hund coupling region, where the inter-orbital interaction U'-J is attractive. At quarter-filling (n=1), the insulating ferromagnetic state appears accompanying orbital quasi-long-range order. For low densities (n<1), ferromagnetism occurs owing to the ferromagnetic exchange interaction caused by virtual hoppings of electrons, the same as in the quarter-filled system. This comes from separation of the charge and spin-orbital degrees of freedom in the strong coupling limit. This ferromagnetism is fragile against variation of band structure. For high densities (n>1), the phase diagram of the ferromagnetic phase is similar to that obtained in infinite dimensions. In this case, the double exchange mechanism is operative to stabilize the ferromagn
- Author
- Sakamoto, Harumi; Momoi, Tsutomu; Kubo, Kenn
- Published
- 2001
- Language
- EN
More by Sakamoto, Harumi; Momoi, Tsutomu; Kubo, Kenn
Browse all works by Sakamoto, Harumi; Momoi, Tsutomu; Kubo, Kenn