We discuss theoretically the local density of states (LDOS) of a graphene sheet hosting two distant adatoms located at the center of hexagonal cells. By putting laterally a scanning tunneling microscope (STM) tip over a carbon atom, two remarkable novel effects can be detected: i) a multilevel structure in the LDOS and ii) beating patterns in the induced LDOS. We show that both phenomena occur nearby the Dirac points and are highly anisotropic. Furthermore, we propose conductance experiments employing STM as a probe for the observation of such exotic manifestations in the LDOS of graphene induced by inter-adatoms correlations
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
We studied experimentally and theoretically the electronic local density of states (LDOS) near singl...
We present an in-depth study of the myriad atomically resolved patterns observed on graphite using t...
Foi discutido teoricamente a Densidade Local de Estados (LDOS) de uma folha de grafeno hospedando du...
We examine theoretically the signatures of magnetic adatoms in graphene probed by scanning tunneling...
We examine theoretically the signatures of magnetic adatoms in graphene probed by scanning tunneling...
We present exact analytical calculations of scanning tunneling currents in locally disordered graphe...
Graphene consists of an atom-thick layer of carbon atoms arranged in a honeycomb lattice, and its lo...
We explore theoretically the formation of bound states in the continuum (BICs) in graphene hosting t...
We explore theoretically the formation of bound states in the continuum (BICs) in graphene hosting t...
International audienceWe investigate the electronic structure of terraces of single layer graphene (...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
In the two-dimensional (2D) lattice of graphene, consisting of carbon atoms arranged in a honeycomb...
Perturbations of the two dimensional carbon lattice of graphene, such as grain boundaries, have sign...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
We studied experimentally and theoretically the electronic local density of states (LDOS) near singl...
We present an in-depth study of the myriad atomically resolved patterns observed on graphite using t...
Foi discutido teoricamente a Densidade Local de Estados (LDOS) de uma folha de grafeno hospedando du...
We examine theoretically the signatures of magnetic adatoms in graphene probed by scanning tunneling...
We examine theoretically the signatures of magnetic adatoms in graphene probed by scanning tunneling...
We present exact analytical calculations of scanning tunneling currents in locally disordered graphe...
Graphene consists of an atom-thick layer of carbon atoms arranged in a honeycomb lattice, and its lo...
We explore theoretically the formation of bound states in the continuum (BICs) in graphene hosting t...
We explore theoretically the formation of bound states in the continuum (BICs) in graphene hosting t...
International audienceWe investigate the electronic structure of terraces of single layer graphene (...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
In the two-dimensional (2D) lattice of graphene, consisting of carbon atoms arranged in a honeycomb...
Perturbations of the two dimensional carbon lattice of graphene, such as grain boundaries, have sign...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
We studied experimentally and theoretically the electronic local density of states (LDOS) near singl...
We present an in-depth study of the myriad atomically resolved patterns observed on graphite using t...