Nanoelectronic quantum dot devices exploiting the charge-Kondo paradigm have been established as versatile and accurate analogue quantum simulators of fundamental quantum impurity models. In particular, hybrid metal–semiconductor dots connected to two metallic leads realize the two-channel Kondo (2CK) model, in which Kondo screening of the dot charge pseudospin is frustrated. In this article, a two-channel charge-Kondo device made instead from graphene components is considered, realizing a pseudogapped version of the 2CK model. The model is solved using Wilson’s Numerical Renormalization Group method, uncovering a rich phase diagram as a function of dot–lead coupling strength, channel asymmetry, and potential scattering. The complex physics...
We investigate a tunable two-impurity Kondo system in a strongly correlated carbon nanotube double q...
Based on the noncrossing approximation, we calculate both the linear and nonlinear conductance withi...
International audienceQuantum phase transitions (QPTs) are ubiquitous in strongly-correlated materia...
Nanoelectronic quantum dot devices exploiting the charge-Kondo paradigm have been established as ver...
Nanoelectronic quantum dot devices exploiting the charge-Kondo paradigm have been established as ver...
International audienceMany-body correlations and macroscopic quantum behaviours are fascinating cond...
Recent progress in nanotechnology allows to engineer hybrid mesoscopic devices comprising on chip an...
We consider the non-Fermi-liquid quantum critical state of the spin-S two-impurity Kondo model and i...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
We study theoretically a ring of three quantum dots mutually coupled by antiferromagnetic exchange i...
We study odd-membered chains of spin-1/2 impurities, with each end connected to its own metallic lea...
We study the low-temperature physics arising in models of a strongly correlated, tunnel-coupled doub...
The enormous interest in industrial application of semiconductor components has led to the developme...
We discuss the two-channel Kondo problem with a pseudogap density of states rho(omega) proportional ...
We study the influence of many-body interactions on the transport properties in a two-site charge Ko...
We investigate a tunable two-impurity Kondo system in a strongly correlated carbon nanotube double q...
Based on the noncrossing approximation, we calculate both the linear and nonlinear conductance withi...
International audienceQuantum phase transitions (QPTs) are ubiquitous in strongly-correlated materia...
Nanoelectronic quantum dot devices exploiting the charge-Kondo paradigm have been established as ver...
Nanoelectronic quantum dot devices exploiting the charge-Kondo paradigm have been established as ver...
International audienceMany-body correlations and macroscopic quantum behaviours are fascinating cond...
Recent progress in nanotechnology allows to engineer hybrid mesoscopic devices comprising on chip an...
We consider the non-Fermi-liquid quantum critical state of the spin-S two-impurity Kondo model and i...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
We study theoretically a ring of three quantum dots mutually coupled by antiferromagnetic exchange i...
We study odd-membered chains of spin-1/2 impurities, with each end connected to its own metallic lea...
We study the low-temperature physics arising in models of a strongly correlated, tunnel-coupled doub...
The enormous interest in industrial application of semiconductor components has led to the developme...
We discuss the two-channel Kondo problem with a pseudogap density of states rho(omega) proportional ...
We study the influence of many-body interactions on the transport properties in a two-site charge Ko...
We investigate a tunable two-impurity Kondo system in a strongly correlated carbon nanotube double q...
Based on the noncrossing approximation, we calculate both the linear and nonlinear conductance withi...
International audienceQuantum phase transitions (QPTs) are ubiquitous in strongly-correlated materia...