A mechanism for nonmonotonic in multilayer cuprates
arXiv:2603.22662
Abstract
We propose an explanation of the observed dependence of the maximal critical temperature on the number of conducting layers in layered copper-oxide superconductors within the preformed pair mechanism. Copper-oxygen planes fine-tune the lattice anisotropy and regulate the balance between the attractive and kinetic energies of carrier holes. To maximize the Bose-Einstein condensation temperature, real-space pairs must be compact and light at the same time. Generally, increases between and because pairs become lighter. For , the rising kinetic energy weakens the pairs, leading to inflated pair volumes and reduced . By varying model parameters, the peak of can be tuned to , , or . We also discuss strategies for using this knowledge to boost beyond the current record of 138 K.
19 pages, 11 figures, 24 pages of technical appendices with 21 more figures