A family of highly sensitive devices based on a graphene nanobridge and superconducting electrodes has been developed, manufactured, and examined. These devices can be used to create a graphene-based integral receiver. A cold-electron bolometer prototype with superconductor-insulator-normal metal tunnel junctions has been studied. Its response to a change in the temperature and external microwave radiation has been measured. A superconducting quantum interferometer with a graphene strip as a weak coupling between superconducting electrodes has been examined. The corresponding modulation of the voltage by a magnetic field at a given current has been measured. The effect of the gate voltage on the resistance of graphene has been analyzed for ...
Twisted bilayer graphene enables the realization of Josephson junctions and single electron transist...
Electronic cooling in hybrid normal-metal-insulator-superconductor junctions is a promising technolo...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
A family of highly sensitive devices based on a graphene nanobridge and superconducting electrodes h...
This Special Issue reprint aims to collect new or improved ideas to exploit superconducting material...
Graphene is the first single-atom-thick two-dimensional material and exhibits a large set of interes...
In this work, the properties of proximity-induced superconductivity in graphene and bilayer graphene...
Miniaturization and performance improvements are driving the electronic industry to shrink the featu...
Since the carrier density and resistivity of graphene are heavily dependent on the Fermi level, Jose...
Provided that it is in good electrical contact with a superconductor, a normal metal can acquire sup...
In this thesis, sophisticated conductance and noise measurements were employed for studying electron...
Graphenes transport properties have been extensively studied in the 10 years since its discovery in ...
In this work, the high frequency response of several types of graphene field-effect transistors (GFE...
The Josephson effect is one of the most studied macroscopic quantum phenomena in condensed matter ph...
Josephson junctions and superconducting quantum interference devices (SQUIDs) with graphene as the w...
Twisted bilayer graphene enables the realization of Josephson junctions and single electron transist...
Electronic cooling in hybrid normal-metal-insulator-superconductor junctions is a promising technolo...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
A family of highly sensitive devices based on a graphene nanobridge and superconducting electrodes h...
This Special Issue reprint aims to collect new or improved ideas to exploit superconducting material...
Graphene is the first single-atom-thick two-dimensional material and exhibits a large set of interes...
In this work, the properties of proximity-induced superconductivity in graphene and bilayer graphene...
Miniaturization and performance improvements are driving the electronic industry to shrink the featu...
Since the carrier density and resistivity of graphene are heavily dependent on the Fermi level, Jose...
Provided that it is in good electrical contact with a superconductor, a normal metal can acquire sup...
In this thesis, sophisticated conductance and noise measurements were employed for studying electron...
Graphenes transport properties have been extensively studied in the 10 years since its discovery in ...
In this work, the high frequency response of several types of graphene field-effect transistors (GFE...
The Josephson effect is one of the most studied macroscopic quantum phenomena in condensed matter ph...
Josephson junctions and superconducting quantum interference devices (SQUIDs) with graphene as the w...
Twisted bilayer graphene enables the realization of Josephson junctions and single electron transist...
Electronic cooling in hybrid normal-metal-insulator-superconductor junctions is a promising technolo...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...