We report an experimental study of a Cooper pair splitter based on ballistic graphene multiterminal junctions. In a two transverse junction geometry, namely the superconductor-graphene-superconductor and the normal metal-graphene-normal metal, we observe clear signatures of Cooper pair splitting in the local as well as nonlocal electronic transport measurements. Our experimental data can be very well described by our beam splitter model. These results open up possibilities to design new entangled state detection experiments using ballistic Cooper pair splitters
This is the final version of the article. Available from the publisher via the DOI in this record.We...
We propose that a device composed of two vertically stacked monolayer graphene Josephson junctions c...
Perfect Cooper pair splitting is proposed, based on crossed Andreev reflection (CAR) in a p-type sem...
INST: L_200We investigate the possibility of Cooper pair splitting (CPS) in a four terminal, graphen...
A split Cooper pair is a natural source for entangled electrons which is a basic ingredient for quan...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
We investigate the possibility of Cooper pair splitting (CPS) in a four terminal, graphene based dev...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
New strategies to generate and to detect spin-entangled pairs of electrons in mesoscopic solid-state...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
Crossed Andreev reflection (CAR) is a non local process that converts an incoming electron (hole) fr...
We analyze microscopically a Cooper pair splitting device in which a central superconducting lead is...
In this thesis, we investigate Cooper pair splitting in double quantum dot devices made from carbon ...
Spin-orbit interaction provides a spin filtering effect in carbon nanotube based Cooper pair splitte...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
We propose that a device composed of two vertically stacked monolayer graphene Josephson junctions c...
Perfect Cooper pair splitting is proposed, based on crossed Andreev reflection (CAR) in a p-type sem...
INST: L_200We investigate the possibility of Cooper pair splitting (CPS) in a four terminal, graphen...
A split Cooper pair is a natural source for entangled electrons which is a basic ingredient for quan...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
We investigate the possibility of Cooper pair splitting (CPS) in a four terminal, graphene based dev...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
New strategies to generate and to detect spin-entangled pairs of electrons in mesoscopic solid-state...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
Crossed Andreev reflection (CAR) is a non local process that converts an incoming electron (hole) fr...
We analyze microscopically a Cooper pair splitting device in which a central superconducting lead is...
In this thesis, we investigate Cooper pair splitting in double quantum dot devices made from carbon ...
Spin-orbit interaction provides a spin filtering effect in carbon nanotube based Cooper pair splitte...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
We propose that a device composed of two vertically stacked monolayer graphene Josephson junctions c...
Perfect Cooper pair splitting is proposed, based on crossed Andreev reflection (CAR) in a p-type sem...