peer reviewedWe study transport through a double quantum dot system in which each quantum dot is coupled to a phonon mode. Such a system can be realized, e.g., using a suspended carbon nanotube. We find that the interplay between strong electron-phonon coupling and interdot tunneling can lead to a negative differential conductance at bias voltages exceeding the phonon frequency. Various transport properties are discussed, and we explain the physics of the occurrence of negative differential conductance in this system
9 pages, 5 figuresInternational audienceWe report low-temperature transport measurements through a d...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...
International audienceTransport through a single molecular conductor is considered, showing negative...
Recent progress in the field of molecular electronics has revealed the fundamental importance of the...
The transport properties of quantum dot (QD) systems based on double-walled carbon nanotubes (DWCNTs...
In this paper, we investigate the quantum transport of a double quantum dot coupled with a...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
We have measured the differential conductance of a parallel carbon nanotube (CNT) double quantum dot...
We address the electronic resonant transport in presence of a transverse magnetic field through the ...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
Various causes for negative differential conductance in transport through an interacting double quan...
This thesis is on the electronic transport properties of quantum dot systems. We investigate three i...
doi:10.1088/1367-2630/7/1/243 Abstract. Current–voltage characteristics of suspended single-wall car...
In this study, electron transport through a mesoscopic quantum dot system (QD-system) in t...
9 pages, 5 figuresInternational audienceWe report low-temperature transport measurements through a d...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...
International audienceTransport through a single molecular conductor is considered, showing negative...
Recent progress in the field of molecular electronics has revealed the fundamental importance of the...
The transport properties of quantum dot (QD) systems based on double-walled carbon nanotubes (DWCNTs...
In this paper, we investigate the quantum transport of a double quantum dot coupled with a...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
We have measured the differential conductance of a parallel carbon nanotube (CNT) double quantum dot...
We address the electronic resonant transport in presence of a transverse magnetic field through the ...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
Various causes for negative differential conductance in transport through an interacting double quan...
This thesis is on the electronic transport properties of quantum dot systems. We investigate three i...
doi:10.1088/1367-2630/7/1/243 Abstract. Current–voltage characteristics of suspended single-wall car...
In this study, electron transport through a mesoscopic quantum dot system (QD-system) in t...
9 pages, 5 figuresInternational audienceWe report low-temperature transport measurements through a d...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...
Phonon effects in tunnelling through a double quantum dot molecule are investigated by use of a rece...