arXiv · 1601.07454
Spin g-factor due to electronic interactions in graphene
Abstract
The gyromagnetic factor is an important physical quantity relating the magnetic-dipole moment of a particle to its spin. The electron spin g-factor in vacuo is one of the best model-based theoretical predictions ever made, showing agreement with the measured value up to ten parts per trillion. However, for electrons in a material the g-factor is modified with respect to its value in vacuo because of environment interactions. Here, we show how interaction effects lead to the spin g-factor correction in graphene by considering the full electromagnetic interaction in the framework of pseudo-QED. We compare our theoretical prediction with experiments performed on graphene deposited on SiO2 and SiC, and we find a very good agreement between them.
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N. Menezes, Van Sergio Alves, E. C. Marino, L. Nascimento, Leandro O. Nascimento, C. Morais Smith. 2016-01-27. Spin g-factor due to electronic interactions in graphene. https://doi.org/10.1103/physrevb.95.245138
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