Superconducting granular aluminum is attracting increasing interest due to its high kinetic inductance and low dissipation, favoring its use in kinetic inductance particle detectors, superconducting resonators or quantum bits. We perform switching current measurements on DC-SQUIDs, obtained by introducing two identical geometric constrictions in granular aluminum rings of various normal-state resistivities in the range from ρ n = 250–5550 μΩ cm. The relative high kinetic inductance of the SQUID loop, in the range of tens of nH, leads to a suppression of the modulation in the measured switching current versus magnetic flux, accompanied by a distortion towards a triangular shape. We observe a change in the temperature dependence of the switch...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
We demonstrate the in situ engineering of superconducting nanowires via modulation of material prop...
We investigate superconducting granular aluminum (grAl) as a promising material for quantum circuits...
Granular aluminum (grAl) is a promising high kinetic inductance material for detectors, amplifiers, ...
The high kinetic inductance offered by granular aluminum (grAl) has recently been employed for linea...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Superconducting high kinetic inductance elements constitute a valuable resource for quantum circuit ...
We demonstrate the in situ engineering of superconducting nanowires via modulation of material prope...
The development of the fundamental superconducting (SC) energy scales-the SC energy gap Delta and th...
Inductance is a key parameter when optimizing the performance of superconducting quantum interferenc...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
We demonstrate the in situ engineering of superconducting nanowires via modulation of material prop...
We investigate superconducting granular aluminum (grAl) as a promising material for quantum circuits...
Granular aluminum (grAl) is a promising high kinetic inductance material for detectors, amplifiers, ...
The high kinetic inductance offered by granular aluminum (grAl) has recently been employed for linea...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Superconducting high kinetic inductance elements constitute a valuable resource for quantum circuit ...
We demonstrate the in situ engineering of superconducting nanowires via modulation of material prope...
The development of the fundamental superconducting (SC) energy scales-the SC energy gap Delta and th...
Inductance is a key parameter when optimizing the performance of superconducting quantum interferenc...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
International audienceWe report on a detailed study of the optical response and Tc−ρ phase diagram (...
We demonstrate the in situ engineering of superconducting nanowires via modulation of material prop...