We have measured the differential conductance of individual multiwall carbon nanotubes. Coulomb blockade and energy level quantization are observed. The electron levels are nearly fourfold degenerate (including spin) and their evolution in magnetic field (Zeeman splitting) agrees with a g factor of 2. In zero magnetic field the sequential filling of states evolves with spin S according to S = 0-->1/2-->0.... A Kondo enhancement of the conductance is observed when the number of electrons on the tube is odd
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
We report resonant multiple Andreev reflections in a multiwall carbon nanotube quantum dot coupled t...
Low-temperature transport spectroscopy measurements on a quantum dot lithographically defined in a m...
Carbon nanotubes present an ideal system for investigating electronic transport at the nanoscale. In...
Electrical transport measurements of carbon nanotubes filled with magnetic iron nanoparticles are re...
In this thesis ultra clean carbon nanotube quantum dots were investigated. The first part deals with...
The level spectrum of a single-walled carbon nanotube rope, studied by transport spectroscopy, shows...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
In this thesis ultra clean carbon nanotube quantum dots were investigated. The first part deals with...
In this thesis ultra clean carbon nanotube quantum dots were investigated. The first part deals with...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
Quantum transport through finite-length single wall carbon nanotubes was investigated theoretically ...
The level spectrum of a single-walled carbon nanotube rope, studied by transport spectroscopy, shows...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
We report resonant multiple Andreev reflections in a multiwall carbon nanotube quantum dot coupled t...
Low-temperature transport spectroscopy measurements on a quantum dot lithographically defined in a m...
Carbon nanotubes present an ideal system for investigating electronic transport at the nanoscale. In...
Electrical transport measurements of carbon nanotubes filled with magnetic iron nanoparticles are re...
In this thesis ultra clean carbon nanotube quantum dots were investigated. The first part deals with...
The level spectrum of a single-walled carbon nanotube rope, studied by transport spectroscopy, shows...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
In this thesis ultra clean carbon nanotube quantum dots were investigated. The first part deals with...
In this thesis ultra clean carbon nanotube quantum dots were investigated. The first part deals with...
We investigate the quantum transport in different individual carbon nanotubes in the light of magnet...
Quantum transport through finite-length single wall carbon nanotubes was investigated theoretically ...
The level spectrum of a single-walled carbon nanotube rope, studied by transport spectroscopy, shows...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
We report resonant multiple Andreev reflections in a multiwall carbon nanotube quantum dot coupled t...
Low-temperature transport spectroscopy measurements on a quantum dot lithographically defined in a m...