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 ...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
The quantum Hall effect is the basis for the realisation of the resistance and impedance units in th...
Graphene is an exciting new atomically-thin two-dimensional (2D) system of carbon atoms organized in...
A family of highly sensitive devices based on a graphene nanobridge and superconducting electrodes h...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
Circuit quantum electrodynamics has proven to be a powerful tool to probe mesoscopic effects in hybr...
In this thesis, I firstly report high field measurements of graphene/NbN junctions, in which NbN mak...
175 pagesGraphene is a material consisting of a single layer of carbon atoms, with distinctive elect...
Provided that it is in good electrical contact with a superconductor, a normal metal can acquire sup...
The Josephson effect is one of the most studied macroscopic quantum phenomena in condensed matter ph...
This review discusses the electronic properties and the prospective research directions of supercond...
DoctorThe graphene is rapidly emerging new material from condensed physics because it is a gap-less ...
We have realized an integer quantum Hall system with superconducting contacts by connecting graphene...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
The quantum Hall effect is the basis for the realisation of the resistance and impedance units in th...
Graphene is an exciting new atomically-thin two-dimensional (2D) system of carbon atoms organized in...
A family of highly sensitive devices based on a graphene nanobridge and superconducting electrodes h...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
Circuit quantum electrodynamics has proven to be a powerful tool to probe mesoscopic effects in hybr...
In this thesis, I firstly report high field measurements of graphene/NbN junctions, in which NbN mak...
175 pagesGraphene is a material consisting of a single layer of carbon atoms, with distinctive elect...
Provided that it is in good electrical contact with a superconductor, a normal metal can acquire sup...
The Josephson effect is one of the most studied macroscopic quantum phenomena in condensed matter ph...
This review discusses the electronic properties and the prospective research directions of supercond...
DoctorThe graphene is rapidly emerging new material from condensed physics because it is a gap-less ...
We have realized an integer quantum Hall system with superconducting contacts by connecting graphene...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
The quantum Hall effect is the basis for the realisation of the resistance and impedance units in th...
Graphene is an exciting new atomically-thin two-dimensional (2D) system of carbon atoms organized in...