paper

Magnon-Mediated Superconductivity in the Infinite- Triangular Lattice

arXiv:2602.06231

Abstract

We demonstrate that the infinite- triangular-lattice Hubbard model supports a superconducting state built from tightly bound Cooper pairs composed of two holes and one magnon (). Building on the seminal prediction of repulsively bound states, we show that next-nearest-neighbor hopping coherently mixes symmetry-related configurations, stabilizing an -wave bound state with substantial binding energy and a light effective mass. Large-scale DMRG calculations at finite doping identify a magnetization plateau corresponding to a gas of such bound states and quasi--long--range superconducting order with power-law pair correlations. Our results establish a magnon-mediated superconducting mechanism driven by kinetic frustration, with immediate detectable signatures for moiré Hubbard materials and ultracold-atom simulators.

15 pages, 13 figures (including Supplementary Material).Submitted to Physical Review Letters

Magnon-Mediated Superconductivity in the Infinite-$U$ Triangular Lattice · wovepaper