We investigate superconducting granular aluminum (grAl) as a promising material for quantum circuits. We show that grAl strips can reach kinetic inductances up to nH/sq, while maintaining small microwave frequency losses. We identify excess quasiparticles as a limiting loss mechanism, and find quasiparticle relaxation times on the order of seconds. By fabricating a fluxonium quantum bit with a grAl superinductor, we demonstrate that grAl is a viable material for superconducting quantum circuits
Superconducting granular aluminum is attracting increasing interest due to its high kinetic inductan...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
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...
The high kinetic inductance offered by granular aluminum (grAl) has recently been employed for linea...
Superconducting high kinetic inductance elements constitute a valuable resource for quantum circuit ...
Recently, a new kind of distributed element superconducting resonators with granular aluminum (grAl)...
Mesoscopic Josephson junctions (JJs), consisting of overlapping superconducting electrodes separated...
Mesoscopic Josephson junctions (JJs), consisting of overlapping superconducting electrodes separated...
Mesoscopic Josephson junctions (JJs), consisting of overlapping superconducting electrodes separated...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
Superinductors are inductors whose microwave characteristic impedances are greater than the resistan...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Superconducting granular aluminum is attracting increasing interest due to its high kinetic inductan...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
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...
The high kinetic inductance offered by granular aluminum (grAl) has recently been employed for linea...
Superconducting high kinetic inductance elements constitute a valuable resource for quantum circuit ...
Recently, a new kind of distributed element superconducting resonators with granular aluminum (grAl)...
Mesoscopic Josephson junctions (JJs), consisting of overlapping superconducting electrodes separated...
Mesoscopic Josephson junctions (JJs), consisting of overlapping superconducting electrodes separated...
Mesoscopic Josephson junctions (JJs), consisting of overlapping superconducting electrodes separated...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
Superinductors are inductors whose microwave characteristic impedances are greater than the resistan...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Superconducting granular aluminum is attracting increasing interest due to its high kinetic inductan...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...