We have investigated the magnetoconductance of semiconducting carbon nanotubes (CNTs) in pulsed, parallel magnetic fields up to 60 T, and report the direct observation of the predicted band-gap closure and the reopening of the gap under variation of the applied magnetic field. We also highlight the important influence of mechanical strain on the magnetoconductance of the CNTs
Scope of the thesis was the investigation of nano-electromechanical properties of carbon nanotubes,...
The transport properties of finite nanotubes placed in a magnetic field parallel to their axes are i...
Multi-walled carbon nanotubes (MWCNTs) show an oscillation in electrical resistance (from I–V measur...
We have investigated the magnetoconductance of semiconducting carbon nanotubes (CNTs) in pulsed, par...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
International audienceAfter optimization of the alignment and the nano-contact processes of isolated...
Suspended carbon nanotubes display at cryogenic temperatures a distinct interaction between the quan...
International audienceWe investigate the quantum transport in different individual carbon nanotubes ...
Electronic transport measurements in individual multiwall carbon nanotubes under pulsed magnetic fie...
Single-walled carbon nanotubes (SWNTs) present an ideal system for study of one dimensional physics....
A magnetic field, through its vector potential, usually causes measurable changes in the electron wa...
We explored high-field (60T) magneto-resistance (MR) with two carbon nanotube (CNT) material classes...
We have studied the energy spectrum of multiwall carbon nanotubes using differential conductance mea...
The electronic spectra of long carbon nanotubes (CNTs) can, to a very good approximation, be obtaine...
First-principles, spin-relaxed pseudopotential plane wave calculations show that Ti atoms can form a...
Scope of the thesis was the investigation of nano-electromechanical properties of carbon nanotubes,...
The transport properties of finite nanotubes placed in a magnetic field parallel to their axes are i...
Multi-walled carbon nanotubes (MWCNTs) show an oscillation in electrical resistance (from I–V measur...
We have investigated the magnetoconductance of semiconducting carbon nanotubes (CNTs) in pulsed, par...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
International audienceAfter optimization of the alignment and the nano-contact processes of isolated...
Suspended carbon nanotubes display at cryogenic temperatures a distinct interaction between the quan...
International audienceWe investigate the quantum transport in different individual carbon nanotubes ...
Electronic transport measurements in individual multiwall carbon nanotubes under pulsed magnetic fie...
Single-walled carbon nanotubes (SWNTs) present an ideal system for study of one dimensional physics....
A magnetic field, through its vector potential, usually causes measurable changes in the electron wa...
We explored high-field (60T) magneto-resistance (MR) with two carbon nanotube (CNT) material classes...
We have studied the energy spectrum of multiwall carbon nanotubes using differential conductance mea...
The electronic spectra of long carbon nanotubes (CNTs) can, to a very good approximation, be obtaine...
First-principles, spin-relaxed pseudopotential plane wave calculations show that Ti atoms can form a...
Scope of the thesis was the investigation of nano-electromechanical properties of carbon nanotubes,...
The transport properties of finite nanotubes placed in a magnetic field parallel to their axes are i...
Multi-walled carbon nanotubes (MWCNTs) show an oscillation in electrical resistance (from I–V measur...