In multiband superconductivity, the case where the single electron hopping between different Fermi surface spots of different symmetry is forbidden by selection rules is recently attracting a large interest. The focus is addressed to superconductivity made of multiple condensates with different symmetry where the chemical potential crosses a 2.5 Lifshitz transition. This can now be investigated experimentally by fine-tuning of the chemical potential in the range of tens meV around a band edge using gate voltage control. We discuss here the case of the two-dimensional electron gas (2DEG), at the interface between two insulating oxides confined within a slab of 5 nanometers thickness, where the electronic structure is made of subbands generated by quantum size effects. We focus on the case of the BCS-BEC transition in the upper subband for different pairing strength in the shallow Fermi surface.
@article{arxiv.1312.6669,
title = {Shape Resonances in superconducting gaps in a 2DEG at oxide-oxide interface},
author = {Antonio Bianconi and Davide Innocenti and Antonio Valletta and Andrea Perali},
journal= {arXiv preprint arXiv:1312.6669},
year = {2014}
}