arXiv · 1310.7154
Statistical repulsion/attraction of electrons in graphene in a magnetic field
Abstract
The aim of this work is to describe the thermodynamic properties of an electron gas in graphene placed in a constant magnetic field. The electron gas is constituted by $N$ Bloch electrons in the long wavelength approximation. The partition function is analyzed in terms of a perturbation expansion of the dimensionless constant $(\sqrt{eB}L)^{-1}$. The statistical repulsion/attraction potential for electrons in graphene is obtained in the respective case in which antisymmetric/symmetric states in the coordinates are chosen. Thermodynamic functions are computed for different orders in the perturbation expansion and the different contributions are compared for symmetric and antisymmetric states, showing remarkable differences between them due to the spin exchange correlation. A detailed analysis of the statistical potential is done, showing that, although electrons satisfy Fermi statistics, attractive potential at some interparticle distances can be found.
Explore related subjects
Keep this discovery
Juan Sebastian Ardenghi, Pablo Bechthold, Estela Gonzalez, Paula Jasen, Alfredo Juan. 2013-10-27. Statistical repulsion/attraction of electrons in graphene in a magnetic field. https://doi.org/10.1016/j.physb.2013.10.004
Cite the original work for its findings. Save a collection to share your selection of sources.