We show theoretically that in the external magnetic field like charges on top of graphene monolayer may be mutually attracted to form macro-molecules. For this to happen graphene needs to be in Quantum Hall plateau state with local chemical potential being between the Landau levels. Graphene electron(s) gets localized in the middle between charges and provides overscreening of Coulomb repulsion between the charges. The size of the resulting macro-molecules is of the order of the magnetic length ($\sim 10$ nm for magnetic field 10 T). The possible stable macro-molecules that unit charges can form on graphene in magnetic field are classified. The binding survives significant temperatures, exceeding mobility barriers for many ionically bond im...
New materials often lead to spectacular discoveries. A prominenent example is graphene, a single l...
The quantum Hall effect is widely used for the investigation of fundamental phenomena, ranging from ...
We have studied the quantum Hall (QH) effect in two-dimensional electrons and holes in high quality ...
The magnetic field dependence of energy levels in gapped single- and bilayer graphene quantum dots (...
Resonant scattering at the atomic absorbates in graphene was investigated recently in relation with ...
arXiv:1405.3766v1Unconventional magnetotransport fingerprints in the quantum Hall regime (with appli...
Unconventional magnetotransport fingerprints in the quantum Hall regime (with applied magnetic field...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Epitaxial graphene has proven itself to be the best candidate for quantum electrical resistance stan...
AbstractIn this contribution, we study the effects caused by an impurity on the quantum dynamics of ...
We consider collective excitations in graphene with filled Landau levels (LL’s) in the presence of a...
The physics of quantum materials is at the heart of current condensed matter research. The interacti...
Insights into the fundamental properties of graphene's Dirac-Weyl fermions have emerged from studies...
In this paper, we clarified a robust mechanism of magnetism generated by excess electrons captured b...
26 pages, 2 figuresInternational audienceWe study theoretically the energy and spatially resolved lo...
New materials often lead to spectacular discoveries. A prominenent example is graphene, a single l...
The quantum Hall effect is widely used for the investigation of fundamental phenomena, ranging from ...
We have studied the quantum Hall (QH) effect in two-dimensional electrons and holes in high quality ...
The magnetic field dependence of energy levels in gapped single- and bilayer graphene quantum dots (...
Resonant scattering at the atomic absorbates in graphene was investigated recently in relation with ...
arXiv:1405.3766v1Unconventional magnetotransport fingerprints in the quantum Hall regime (with appli...
Unconventional magnetotransport fingerprints in the quantum Hall regime (with applied magnetic field...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Epitaxial graphene has proven itself to be the best candidate for quantum electrical resistance stan...
AbstractIn this contribution, we study the effects caused by an impurity on the quantum dynamics of ...
We consider collective excitations in graphene with filled Landau levels (LL’s) in the presence of a...
The physics of quantum materials is at the heart of current condensed matter research. The interacti...
Insights into the fundamental properties of graphene's Dirac-Weyl fermions have emerged from studies...
In this paper, we clarified a robust mechanism of magnetism generated by excess electrons captured b...
26 pages, 2 figuresInternational audienceWe study theoretically the energy and spatially resolved lo...
New materials often lead to spectacular discoveries. A prominenent example is graphene, a single l...
The quantum Hall effect is widely used for the investigation of fundamental phenomena, ranging from ...
We have studied the quantum Hall (QH) effect in two-dimensional electrons and holes in high quality ...