| نویسندگان | روح اله فرقدان-علیرضا صفارزاده-ابراهیم حیدری |
| نشریه | J APPL PHYS |
| تاریخ انتشار | 2013-12-01 |
| نمایه نشریه | ISI |
چکیده مقاله
The effect of electron-electron interaction on the electronic structure of Aharonov-Bohm (AB)
graphene quantum rings (GQRs) is explored theoretically using the single-band tight-binding
Hamiltonian and the mean-field Hubbard model. The electronic states and magnetic properties of
hexagonal, triangular, and circular GQRs with different sizes and zigzag edge terminations are
studied. The results show that, although the AB oscillations in the all types of nanoring are affected
by the interaction, the spin splitting in the AB oscillations strongly depends on the geometry and
the size of graphene nanorings. We found that the total spin of hexagonal and circular rings is zero
and therefore, no spin splitting can be observed in the AB oscillations. However, the non-zero
magnetization of the triangular rings breaks the degeneracy between spin-up and spin-down
electrons, which produces spin-polarized AB oscillations.