We examine transport through a spin-1/2 Kondo impurity, patterned between atomic scale electrodes in the presence of side-coupled nanographene flake. Impurity is attached to the edge of the flake, what allows to test the edge states. The Kotliar Ruckenstein slave boson approach is adopted to describe the strongly correlated impurity. We show that transport measurement of Fano-Kondo effect can serve as a spectroscopic probe of spin resolved graphene flake energy levels. The edge moments can be completely suppressed by gate voltage
We show theoretically that graphene, which exhibits a massless dirac-like spectrum for its electrons...
© 2019 American Physical Society. Kondo physics in doped monolayer graphene is predicted to exhibit ...
We study a magnetic impurity intercalated in bilayer graphene. A representative configuration genera...
We examine transport through a spin-1/2 Kondo impurity, patterned between atomic scale electrodes in...
We consider the theory of Kondo effect and Fano factor energy dependence for magnetic impurity (Co) ...
Abstract. This article summarizes our understanding of the Kondo effect in graphene, primarily from ...
An interplay of the Kondo effect and inter-impurity correlations in the armchair graphene nanoribbon...
We study the Kondo screening of a magnetic impurity adsorbed in graphene in the presence of Rashba s...
Based on the tight-binding formalism, we investigate the Anderson and the Kondo model for an adatom ...
Based on the noncrossing approximation, we calculate both the linear and nonlinear conductance withi...
We explore theoretically the density of states (LDOS) probed by a scanning tunneling microscope (STM...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
We report on low-temperature transport measurements on four-terminal cross junction devices fabricat...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
We show theoretically that graphene, which exhibits a massless dirac-like spectrum for its electrons...
© 2019 American Physical Society. Kondo physics in doped monolayer graphene is predicted to exhibit ...
We study a magnetic impurity intercalated in bilayer graphene. A representative configuration genera...
We examine transport through a spin-1/2 Kondo impurity, patterned between atomic scale electrodes in...
We consider the theory of Kondo effect and Fano factor energy dependence for magnetic impurity (Co) ...
Abstract. This article summarizes our understanding of the Kondo effect in graphene, primarily from ...
An interplay of the Kondo effect and inter-impurity correlations in the armchair graphene nanoribbon...
We study the Kondo screening of a magnetic impurity adsorbed in graphene in the presence of Rashba s...
Based on the tight-binding formalism, we investigate the Anderson and the Kondo model for an adatom ...
Based on the noncrossing approximation, we calculate both the linear and nonlinear conductance withi...
We explore theoretically the density of states (LDOS) probed by a scanning tunneling microscope (STM...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
We report on low-temperature transport measurements on four-terminal cross junction devices fabricat...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
We show theoretically that graphene, which exhibits a massless dirac-like spectrum for its electrons...
© 2019 American Physical Society. Kondo physics in doped monolayer graphene is predicted to exhibit ...
We study a magnetic impurity intercalated in bilayer graphene. A representative configuration genera...