Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature differential conductance of Coulomb blockaded quantum dots. In the presence of a global SU(2) circle times SU(2) symmetry, which can be realized in carbon nanotubes, they also inhibit inelastic transitions which preserve the Kramers pseudospins associated to the symmetry. We report on magnetotransport experiments on a Kondo correlated carbon nanotube where resonant features at the bias corresponding to the pseudospin-preserving transitions are observed. We attribute this effect to a simultaneous enhancement of pseudospin-nonpreserving transitions occurring at that bias. This process is boosted by asymmetric tunneling couplings of the two Kramers ...
The Kondo effect and superconductivity are both prime examples of many-body phenomena. Here we repor...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Many-body entanglement is at the heart of the Kondo effect, which has its hallmark in quantum dots a...
Many-body entanglement is at the heart of the Kondo effect, which has its hallmark in quantum dots a...
Many-body entanglement is at the heart of the Kondo effect, which has its hallmark in quantum dots a...
International audienceMany-body entanglement is at the heart of the Kondo effect, which has its hall...
International audienceMany-body entanglement is at the heart of the Kondo effect, which has its hall...
International audienceMany-body entanglement is at the heart of the Kondo effect, which has its hall...
We experimentally investigate the electronic transportthrough a double-wall carbon nanotubefilled wi...
We investigate the effects of spin–orbit interaction (SOI) and valley mixing on the transport and dy...
We investigate the effects of spin-orbit interaction (SOI) and valley mixing on the transport and dy...
In a single state of a quantum dot the Kondo effect arises due to the spin-degeneracy, which is pres...
The Kondo effect and superconductivity are both prime examples of many-body phenomena. Here we repor...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Many-body entanglement is at the heart of the Kondo effect, which has its hallmark in quantum dots a...
Many-body entanglement is at the heart of the Kondo effect, which has its hallmark in quantum dots a...
Many-body entanglement is at the heart of the Kondo effect, which has its hallmark in quantum dots a...
International audienceMany-body entanglement is at the heart of the Kondo effect, which has its hall...
International audienceMany-body entanglement is at the heart of the Kondo effect, which has its hall...
International audienceMany-body entanglement is at the heart of the Kondo effect, which has its hall...
We experimentally investigate the electronic transportthrough a double-wall carbon nanotubefilled wi...
We investigate the effects of spin–orbit interaction (SOI) and valley mixing on the transport and dy...
We investigate the effects of spin-orbit interaction (SOI) and valley mixing on the transport and dy...
In a single state of a quantum dot the Kondo effect arises due to the spin-degeneracy, which is pres...
The Kondo effect and superconductivity are both prime examples of many-body phenomena. Here we repor...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...