Quantum Computing Technologies Leni Bascones2020-02-12T22:24:58+01:00Etiquetas: Applied Science, experiment, Fundamental Science, Superconducting materials and devices for quantum technologies|
FISNANO Leni Bascones2020-02-12T22:23:58+01:00Etiquetas: Applied Science, Fundamental Science, Mesoscopic superconductivity, Superconducting heterostructures, Superconducting materials and devices for quantum technologies, Superconductivity in 2D materials, theory, Topological superconductivity|
MAGNETRANS-UAM Leni Bascones2020-02-12T22:23:35+01:00Etiquetas: Electronic properties of superconductors, experiment, Fundamental Science, Mechanisms of superconductivity, Superconducting heterostructures, Superconducting materials and devices for electrical equipment, Superconducting materials and devices for quantum technologies, superconducting spintronics, vórtices|
Quantum Materials and Photonics Group (QMatterPhotonics) Leni Bascones2020-02-12T22:22:56+01:00Etiquetas: Applied Science, Electronic properties of superconductors, experiment, Fundamental Science, Mechanisms of superconductivity, Mesoscopic superconductivity, Superconducting materials and devices for detectors, Superconducting materials and devices for quantum technologies, Superconductivity in 2D materials, Synthesis of superconducting materials, theory, vórtices|
Laboratorio de Bajas Temperaturas y Altos Campos Magnéticos Leni Bascones2020-02-25T10:55:11+01:00Etiquetas: Applied Science, Electronic properties of superconductors, experiment, Fundamental Science, Mechanisms of superconductivity, Mesoscopic superconductivity, Superconducting materials and devices for quantum technologies, Superconductivity in 2D materials, Synthesis of superconducting materials, Topological superconductivity, vórtices|
Grup de Magnetisme Leni Bascones2020-02-12T22:08:51+01:00Etiquetas: experiment, Fundamental Science, Mechanisms of superconductivity, Superconducting heterostructures, Superconducting materials and devices for electrical equipment, Superconducting materials and devices for quantum technologies, Superconductivity in 2D materials|
Mesoscopic Physics Group Leni Bascones2020-02-12T22:04:36+01:00Etiquetas: Applied Science, Fundamental Science, Mesoscopic superconductivity, Superconducting heterostructures, Superconducting materials and devices for detectors, Superconducting materials and devices for quantum technologies, Superconductivity in 2D materials, theory|
Low Dimensional Quantum Materials Leni Bascones2020-02-12T22:03:32+01:00Etiquetas: Applied Science, Electronic properties of superconductors, experiment, Fundamental Science, Mechanisms of superconductivity, Mesoscopic superconductivity, Superconducting heterostructures, Superconducting materials and devices for detectors, Superconducting materials and devices for quantum technologies, Superconductivity in 2D materials, Topological superconductivity|
GICC, Grupo de Información y computación cuántica Leni Bascones2020-02-12T21:43:25+01:00Etiquetas: Fundamental Science, Superconducting materials and devices for quantum technologies, theory|