We realize a strongly coupled double quantum dot in a single all-organic molecule by introducing a nonconjugated bridge in between two identical conjugated moieties. Spin-1/2 Kondo and Kondo enhanced low-energy excitations for, respectively, the odd and even electron occupation are observed in off-resonant transport. The ground state in the even occupation can be the singlet or the triplet state varying between samples. This observation suggests that both antiferromagnetic and ferromagnetic interactions between spins are of the same order of magnitude
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
We construct a theoretical model to study the orbital Kondo effect in a parallel double quantum dot ...
This dissertation describes measurements of electron transport through single molecules in mechanica...
We realize a strongly coupled double quantum dot in a single all-organic molecule by introducing a n...
We investigate theoretically and experimentally the singlet-triplet Kondo effect induced by a magnet...
Motivated by recent experiments, in which the Kondo effect has been observed for the first time in a...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
International audienceWe review here some universal aspects of the physics of two-electron molecular...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2005.Includes bibliographi...
Quantum spin tunneling and Kondo effect are two very different quantum phenomena that produce the sa...
International audienceQuantum criticality is the intriguing possibility offered by the laws of quant...
[[abstract]]Transition between quantum states in a double quantum dot (DQD) arising from strong elec...
International audienceWe study electronic transport through a magnetic molecule with an intrinsic sp...
Laterally coupled quantum dot molecules are studied using exact diagonalization techniques. We exami...
We analyze the transport properties of a double quantum dot device with both dots coupled to perfect...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
We construct a theoretical model to study the orbital Kondo effect in a parallel double quantum dot ...
This dissertation describes measurements of electron transport through single molecules in mechanica...
We realize a strongly coupled double quantum dot in a single all-organic molecule by introducing a n...
We investigate theoretically and experimentally the singlet-triplet Kondo effect induced by a magnet...
Motivated by recent experiments, in which the Kondo effect has been observed for the first time in a...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
International audienceWe review here some universal aspects of the physics of two-electron molecular...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2005.Includes bibliographi...
Quantum spin tunneling and Kondo effect are two very different quantum phenomena that produce the sa...
International audienceQuantum criticality is the intriguing possibility offered by the laws of quant...
[[abstract]]Transition between quantum states in a double quantum dot (DQD) arising from strong elec...
International audienceWe study electronic transport through a magnetic molecule with an intrinsic sp...
Laterally coupled quantum dot molecules are studied using exact diagonalization techniques. We exami...
We analyze the transport properties of a double quantum dot device with both dots coupled to perfect...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
We construct a theoretical model to study the orbital Kondo effect in a parallel double quantum dot ...
This dissertation describes measurements of electron transport through single molecules in mechanica...