We investigate the effects of spin-orbit interaction (SOI) and valley mixing on the transport and dynamical properties of a carbon nanotube (CNT) quantum dot in the Kondo regime. As these perturbations break the pseudo-spin symmetry in the CNT spectrum but preserve time-reversal symmetry, they induce a finite splitting Delta between formerly degenerate Kramers pairs. Correspondingly, a crossover from the SU (4) to the SU(2)-Kondo effect occurs as the strength of these symmetry breaking parameters is varied. Clear signatures of the crossover are discussed both at the level of the spectral function as well as of the conductance. In particular, we demonstrate numerically and support with scaling arguments that the Kondo temperature scales inve...
Carbon nanotubes are a versatile material in which many aspects of condensed matter physics come tog...
Carbon nanotubes are a versatile material in which many aspects of condensed matter physics come tog...
© 2015 American Physical Society. Carbon nanotubes are a versatile material in which many aspects of...
We investigate the effects of spin–orbit interaction (SOI) and valley mixing on the transport and dy...
We investigate the effects of spin-orbit interaction (SOI) and valley mixing on the transport and dy...
The linear response transport properties of carbon nanotube quantum dot in the strongly correlated r...
Understanding the interplay between many-body phenomena and nonequilibrium in systems with entangled...
Understanding the interplay between many-body phenomena and nonequilibrium in systems with entangled...
Understanding the interplay between many-body phenomena and nonequilibrium in systems with entangled...
Motivated by recent experimental observation of spin-orbit coupling in carbon nanotube quantum dots ...
International audienceWe experimentally investigate the electronic transportthrough a double-wall ca...
International audienceWe experimentally investigate the electronic transportthrough a double-wall ca...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Carbon nanotubes are a versatile material in which many aspects of condensed matter physics come tog...
Carbon nanotubes are a versatile material in which many aspects of condensed matter physics come tog...
© 2015 American Physical Society. Carbon nanotubes are a versatile material in which many aspects of...
We investigate the effects of spin–orbit interaction (SOI) and valley mixing on the transport and dy...
We investigate the effects of spin-orbit interaction (SOI) and valley mixing on the transport and dy...
The linear response transport properties of carbon nanotube quantum dot in the strongly correlated r...
Understanding the interplay between many-body phenomena and nonequilibrium in systems with entangled...
Understanding the interplay between many-body phenomena and nonequilibrium in systems with entangled...
Understanding the interplay between many-body phenomena and nonequilibrium in systems with entangled...
Motivated by recent experimental observation of spin-orbit coupling in carbon nanotube quantum dots ...
International audienceWe experimentally investigate the electronic transportthrough a double-wall ca...
International audienceWe experimentally investigate the electronic transportthrough a double-wall ca...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Kondo correlations are responsible for the emergence of a zero-bias peak in the low temperature diff...
Carbon nanotubes are a versatile material in which many aspects of condensed matter physics come tog...
Carbon nanotubes are a versatile material in which many aspects of condensed matter physics come tog...
© 2015 American Physical Society. Carbon nanotubes are a versatile material in which many aspects of...