International audienceBy using high-magnetic fields (up to 60 T), we observe compelling evidence of the integer quantum Hall effect in trilayer graphene. The magnetotransport fingerprints are similar to those of the graphene monolayer, except for the absence of a plateau at a filling factor of nu = 2. At a very low filling factor, the Hall resistance vanishes due to the presence of mixed electron and hole carriers induced by disorder. The measured Hall resistivity plateaus are well reproduced theoretically, using a self-consistent Hartree calculations of the Landau levels and assuming an ABC stacking order of the three layers
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in bilayer and trilayer graphene, at temperatures be...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
By using high-magnetic fields (up to 60 T), we observe compelling evidence of the integer quantum Ha...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in bilayer and trilayer graphene, at temperatures be...
We have performed magneto-transport experiments in bilayer and trilayer graphene, at temperatures be...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in bilayer and trilayer graphene, at temperatures be...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
By using high-magnetic fields (up to 60 T), we observe compelling evidence of the integer quantum Ha...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in trilayer graphene, at temperatures between 2 and ...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in bilayer and trilayer graphene, at temperatures be...
We have performed magneto-transport experiments in bilayer and trilayer graphene, at temperatures be...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...
We have performed magneto-transport experiments in bilayer and trilayer graphene, at temperatures be...
We have performed magneto-transport experiments in monolayer, bilayer, trilayer and four layered gra...