We report on conductance measurements in carbon nanotube based double quantum dots connected to two normal electrodes and a central superconducting finger. By operating our devices as Cooper pair beam splitters, we provide evidence for Crossed Andreev Reflection (CAR). We inject Cooper pairs in the superconducting electrode and measure the differential conductance at both left and right arm. The contacts split the device into two coupled quantum dots. Each of the quantum dots can be tuned by a lateral sidegate. If the two sidegates are tuned such that both quantum dots are at a transmission resonance, a considerable part of the injected Cooper pairs splits into different normal contacts. On the contrary, if only one of the two dots is at re...
New strategies to generate and to detect spin-entangled pairs of electrons in mesoscopic solid-state...
We report an experimental study of a Cooper pair splitter based on ballistic graphene multiterminal ...
In this thesis, we study carbon nanotubes based quantum dot circuits embedded in a microwave cavity....
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 ...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
Diese Doktorarbeit beschäftigt sich mit auf Kohlenstoffnanoröhren basierenden Doppelquantenpunkten, ...
Diese Doktorarbeit beschäftigt sich mit auf Kohlenstoffnanoröhren basierenden Doppelquantenpunkten, ...
International audienceWe report on conductance measurements in carbon nanotube based double quantum ...
International audienceWe report on conductance measurements in carbon nanotube based double quantum ...
International audienceWe report on conductance measurements in carbon nanotube based double quantum ...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
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...
New strategies to generate and to detect spin-entangled pairs of electrons in mesoscopic solid-state...
We report an experimental study of a Cooper pair splitter based on ballistic graphene multiterminal ...
In this thesis, we study carbon nanotubes based quantum dot circuits embedded in a microwave cavity....
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 ...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
Diese Doktorarbeit beschäftigt sich mit auf Kohlenstoffnanoröhren basierenden Doppelquantenpunkten, ...
Diese Doktorarbeit beschäftigt sich mit auf Kohlenstoffnanoröhren basierenden Doppelquantenpunkten, ...
International audienceWe report on conductance measurements in carbon nanotube based double quantum ...
International audienceWe report on conductance measurements in carbon nanotube based double quantum ...
International audienceWe report on conductance measurements in carbon nanotube based double quantum ...
We report on conductance measurements in carbon nanotube based double quantum dots connected to two ...
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...
New strategies to generate and to detect spin-entangled pairs of electrons in mesoscopic solid-state...
We report an experimental study of a Cooper pair splitter based on ballistic graphene multiterminal ...
In this thesis, we study carbon nanotubes based quantum dot circuits embedded in a microwave cavity....