Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For example, the effect of strong correlations between electrons and of quantum interference can be measured in transport experiments through quantum dots, wires, individual molecules and rings formed by large molecules or arrays of quantum dots. In addition, quantum coherence and entanglement can be clearly observed in quantum corrals. In this paper we present calculations of transport properties through Aharonov-Bohm strongly correlated rings where the characteristic phenomenon of charge-spin separation is clearly observed. Additionally quantum interference effects show up in transport through pi-conjugated annulene molecules producing importan...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
Quantum interference effects offer opportunities to tune the electronic and thermoelectric response ...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
Many of the most intriguing quantum effects are observed or could be measured in transport experimen...
In this thesis we study quantum transport in several one-dimensional systems with strong electronic ...
In this thesis we study quantum transport in several one-dimensional systems with strong electronic ...
A number of experiments on electron transport and coherence in semiconductor vertical and lateral qu...
With progress toward more compact quantum computing architectures, fundamental questions regarding t...
With progress toward more compact quantum computing architectures, fundamental questions regarding t...
We investigate the effect of local electron correlations on transport through parallel quantum dots....
Molecular electronics offers unique scientific and technological possibilities, resulting from both ...
Molecular electronics offers unique scientific and technological possibilities, resulting from both ...
Coherent electronic transport through individual molecules is crucially sensitive to quantum inter...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
Quantum interference effects offer opportunities to tune the electronic and thermoelectric response ...
Several of the most interesting quantum effects can or could be observed in nanoscopic systems. For ...
Many of the most intriguing quantum effects are observed or could be measured in transport experimen...
In this thesis we study quantum transport in several one-dimensional systems with strong electronic ...
In this thesis we study quantum transport in several one-dimensional systems with strong electronic ...
A number of experiments on electron transport and coherence in semiconductor vertical and lateral qu...
With progress toward more compact quantum computing architectures, fundamental questions regarding t...
With progress toward more compact quantum computing architectures, fundamental questions regarding t...
We investigate the effect of local electron correlations on transport through parallel quantum dots....
Molecular electronics offers unique scientific and technological possibilities, resulting from both ...
Molecular electronics offers unique scientific and technological possibilities, resulting from both ...
Coherent electronic transport through individual molecules is crucially sensitive to quantum inter...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
Quantum entanglement, the most remarkable feature of quantum physics, is recognized as a resource fo...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
Quantum interference effects offer opportunities to tune the electronic and thermoelectric response ...