arXiv · 2303.07801
Microscopic theory of supercurrent suppression by gate-controlled surface depairing
Abstract
Recently gate-mediated supercurrent suppression in superconducting nano-bridges has been reported in many experiments. This could be either a direct or an indirect gate effect. The microscopic understanding of this observation is not clear till now. Using the quasiclassical Green's function method, we show that a small concentration of magnetic impurities at the surface of the bridges can significantly help to suppress superconductivity and hence the supercurrent inside the systems while applying a gate field. This is because the gate field can enhance the depairing through the exchange interaction between the magnetic impurities at the surface and the superconductor. We also obtain a \emph{symmetric} suppression of the supercurrent with respect to the gate field, a signature of a direct gate effect. Future experiments can verify our predictions by modifying the surface with magnetic impurities.
Explore related subjects
Keep this discovery
Subrata Chakraborty, Danilo Nikolić, Juan Carlos Cuevas, Francesco Giazotto, Angelo Di Bernardo, Elke Scheer, Mario Cuoco, Wolfgang Belzig. 2023-03-14. Microscopic theory of supercurrent suppression by gate-controlled surface depairing. https://doi.org/10.1103/physrevb.108.184508
Cite the original work for its findings. Save a collection to share your selection of sources.