most citedHow to induce superconductivity in epitaxial graphene remote proximity effect through an intercalated gold layer

12 citations · 18 across the 2 of their papers we have counts for

collaborators

7 papers

cond-mat.mtrl-sci2020

Structure of graphene and a surface carbide grown on the (0001) surface of rhenium

Estelle Mazaleyrat, Monica Pozzo, Dario Alfè +7

Transition metal surfaces catalyse a broad range of thermally-activated reactions involving carbon-containing-species -- from atomic carbon to small hydrocarbons or organic molecul…

cond-mat.mes-hall20208 cited

Fermi resonance in the Raman spectrum of graphene

Dipankar Kalita, Michele Amato, Alexandre Artaud +6

We report the observation of an intense anomalous peak at 1608 cm in the Raman spectrum of graphene associated to the presence of chromium nanoparticles in contact with grap…

cond-mat.supr-con202012 cited

How to induce superconductivity in epitaxial graphene remote proximity effect through an intercalated gold layer

Estelle Mazaleyrat, Sergio Vlaic, Alexandre Artaud +12

Graphene holds promises for exploring exotic superconductivity with Dirac-like fermions. Making graphene a superconductor at large scales is however a long-lasting challenge. A pos…

cond-mat.mtrl-sci20206 cited

Depressions by stacking faults in nanorippled graphene on metals

Georg Daniel Förster, Alexandre Artaud, Estelle Mazaleyrat +9

A broad variety of defects has been observed in two-dimensional materials. Many of these defects can be created by top-down methods such as electron irradiation or chemical etching…

cond-mat.mtrl-sci2018

Graphene as a Mechanically Active, Deformable Two-Dimensional Surfactant

Sergio Vlaic, Nicolas Rougemaille, Alexandre Artaud +12

In crystal growth, surfactants are additive molecules used in dilute amount or as dense, permeable layers to control surface morphologies. Here, we investigate the properties of a…

cond-mat.mes-hall2018

Electronic spectrum of twisted graphene layers under heterostrain

L. Huder, A. Artaud, T. Le Quang +5

We demonstrate that stacking layered materials allows a novel type of strain engineering where each layer is strained independently, which we call heterostrain. We combine detailed…