5 citations · 7 across the 3 of their papers we have counts for
4 papers
Quantum transport in interacting nanodevices: from quantum dots to single-molecule transistors
Emma L. Minarelli
Unprecedented control over the manufacture of electronic devices on nanometer scale has allowed to perform highly controllable and fine-tuned experiments in the quantum regime wher…
Linear response quantum transport through interacting multi-orbital nanostructures
Emma L. Minarelli, Jonas B. Rigo, Andrew K. Mitchell
Nanoelectronics devices, such as quantum dot systems or single-molecule transistors, consist of a quantum nanostructure coupled to a macroscopic external electronic circuit. Thermo…
Two-channel charge-Kondo physics in graphene quantum dots
Emma L. Minarelli, Jonas B. Rigo, Andrew K. Mitchell
Nanoelectronic quantum dot devices exploiting the charge-Kondo paradigm have been established as versatile and accurate analog quantum simulators of fundamental quantum impurity mo…
Engineering of Chern insulators and circuits of topological edge states
Emma L. Minarelli, Kim Pöyhönen, Gerwin A. R. van Dalum +2
Impurities embedded in electronic systems induce bound states which under certain circumstances can hybridize and lead to impurity bands. Doping of insulators with impurities has b…