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◆ Physical review. B./Physical review. B2026-04-27· Quasiperiodic function

Quasiperiodicity-induced enhancement of superconductivity in one-dimensional critical systems

Ricardo C. L. F. Oliveira, Miguel Gonçalves, Pedro Ribeiro, Eduardo V. Castro, Bruno S. Amorim

原始摘要(英文原文)· Original abstract
We show that incommensurability can enhance superconductivity in one dimensional quasiperiodic systems with s-wave pairing. As a parent model, we use a generalized Aubry-André model that includes quasiperiodic modulations both in the potential and in the hoppings. In the absence of interactions, the model contains extended, critical and localized phases for incommensurate modulations. Our results reveal that in a substantial region inside the parent critical phase, there is a significant increase of the superconducting critical temperature compared to the extended phase and the uniform limit without quasiperiodic modulations. We also analyse the results for commensurate modulations with period close to the selected incommensurate one. We find that while in the commensurate case, the scaling of the critical temperature with interaction strength follows the exponentially small weak-coupling BCS prediction for a large enough system size, it scales algebraically in the incommensurate case within the critical and localized parent phases. These qualitatively distinct behaviors lead to a significant incommensurability-induced enhancement of the critical temperature in the weak and intermediate coupling regimes, accompanied by an increase in the superconducting order parameter at zero temperature.
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Quasiperiodicity-induced enhancement of superconductivity in one-dimensional critical systems — 科研速览 Science Skim