Evolution of superconductivity in twisted graphene multilayers

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Abstract

The group of moiré graphene superconductors keeps growing, and by now it contains twisted graphene multilayers as well as untwisted stacks. We analyze here the contribution of long-range charge fluctuations in the superconductivity of twisted double bilayers and helical trilayers, and compare the results to twisted bilayer graphene. A diagrammatic approach which depends on a few, well-known parameters is used. We find that the critical temperature and the order parameter differ significantly between twisted double bilayers and helical trilayers on one hand, and twisted bilayer graphene on the other. This trend, consistent with experiments, can be associated with the role played by moiré Umklapp processes in the different systems.

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Long, M., Jimeno-Pozo, A., Sainz-Cruz, H., Pantaleón, P. A., & Guinea, F. (2024). Evolution of superconductivity in twisted graphene multilayers. Proceedings of the National Academy of Sciences of the United States of America, 121(32). https://doi.org/10.1073/pnas.2405259121

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