Madrid Talento fellowship 4/2023-
Project that tries to bridge the gap between mesoscopic superconductivity and auqntum technologies. This project allowed me to stablish as an independent researcher running my own group.
Marie-Skłodowska-Curie 2023
The project aims at exploiting the unique properties of superconductor-semiconductor interfaces in low-dimensional systems, focusing on topological properties and applications.
Predoctoral grant from the national research agency 1/2013 - 10/2016
The project focused in hybrid superconductor-semiconductor systems for quantum technologies.
Knowledge generation project Nanoscale superconductors meet quantum technologies 1/12/2023 - 30/11/2026
The project aims at filling some gaps toward the development of quantum devices using nanoscaled superconductors. These devices are highly tubanble, offering technological advances with respect to their bulk counterparts.
Nanolund Seedling grant: Andreev bound states in the continuum 1/1/2022 - 31/12/2022
In this project, we analyze the properties of Andreev bound states coexisting with extended states at the continuum. These states adquire a lifetime in the continuum that can be used to estimate the spin-mixing terms.
Nanolund Seedling grant: Transport signatures of odd-frequency superconductivity in superconducting nanoestructures. 1/1/2020 - 31/12/2020
Project on the detection of odd frequency superconductivity in hybrid semiconductor-superconductor devices using transport measurements, resulting in publications: Phys. Rev. Research 2, 043193 (2020), Phys. Rev. B 104, L100505 (2021).
Coherent control of Andreev bound states in superconducting quantum dots 11/2016 - 4/2017
Project about the dynamics of a quantum dot coupled to superconducting leads, focused on the time statistics and the dynamical Yang-Lee zeros. This project resulted in publication Phys. Rev. B 96, 165444 (2017).
Transient transport properties of superconducting quantum dots
11/2015 - 11/2016
Project about the quench dynamics of superconducting nanojunctions, resulting in publication Phys. Rev. Lett. 117, 267701 (2016).
Theoretical study of Majorana single-charge transistor using numerical renormalization group.
7/2015 - 11/2015
Project about topological superconductivity where we have studied the conductance of a Majorana single charge transistor using numerical renormalization group.