Doping fingerprints of spin and lattice fluctuations in moiré superlattice systems
arXiv:2108.01121 · doi:10.1103/PhysRevB.105.L241109
Abstract
Twisted Van der Waals systems offer the unprecedented possibility to tune different states of correlated quantum matter with an external non-invasive electrostatic doping. The nature of the superconducting order presents a recurring open question in this context. In this work, we quantitatively assess the case of spin-fluctuation-mediated pairing for -valley twisted transition metal dichalcogenide homobilayers. We self-consistently and dynamically calculate the doping dependent superconducting transition temperature revealing a superconducting dome with a maximal K depending on twist angle. We compare our results with conventional phonon-mediated superconductivity and identify clear fingerprints in the doping dependence of , which allow experiments to distinguish between different pairing mechanisms.
9 pages, 3 figures + SM with 18 pages, 11 figures
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