Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nanowires can undergo an intrinsic electromigration process. We use a combination of experimental and computational approaches to investigate the role of grain morphology and distribution in granular aluminium thin films, when formed into nanowire constrictions. Treating the granular aluminium film as a network of randomly distributed resistors with parameters motivated by the film microstructure allows us to model the electrical characteristics of the nanowires. This model provides estimates of the dependence of sheet resistance on grain size and distribution, and the resulting device to device variation for superconducting nanowires. By fabric...
We investigate superconducting granular aluminum (grAl) as a promising material for quantum circuits...
Superconducting nanowires have been, for years now, a topic of great interest due to their potentia...
We have studied the resistance of two-dimensional random percolating networks of zero-width metallic...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Superconducting nanowires currently attract great interest due to their application in single-photon...
The development of a materials platform that exhibits both superconducting and semiconducting proper...
A well known theorem of Mermin and Wagner explicitly states that Superconductivity in one or two dim...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
Journal ArticleWe study the effect of morphology on the low-temperature behavior of superconducting ...
We have studied the electrical conductance of two-dimensional (2D) random percolating networks of ze...
<p>This thesis focuses on the fluctuation in the switching current $I_s$ of superconducting Al nanow...
Nanowires are conductive wires that have a constrictive width that is only a few atoms across. Scien...
We investigate superconducting granular aluminum (grAl) as a promising material for quantum circuits...
Superconducting nanowires have been, for years now, a topic of great interest due to their potentia...
We have studied the resistance of two-dimensional random percolating networks of zero-width metallic...
Granular aluminium is a high kinetic inductance thin film superconductor which, when formed into nan...
Superconducting nanowires currently attract great interest due to their application in single-photon...
The development of a materials platform that exhibits both superconducting and semiconducting proper...
A well known theorem of Mermin and Wagner explicitly states that Superconductivity in one or two dim...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
The unusual superconducting properties of granular aluminum oxide have been recently investigated fo...
Journal ArticleWe study the effect of morphology on the low-temperature behavior of superconducting ...
We have studied the electrical conductance of two-dimensional (2D) random percolating networks of ze...
<p>This thesis focuses on the fluctuation in the switching current $I_s$ of superconducting Al nanow...
Nanowires are conductive wires that have a constrictive width that is only a few atoms across. Scien...
We investigate superconducting granular aluminum (grAl) as a promising material for quantum circuits...
Superconducting nanowires have been, for years now, a topic of great interest due to their potentia...
We have studied the resistance of two-dimensional random percolating networks of zero-width metallic...