most citedTwo-dimensional Mott-Hubbard electrons in an artificial honeycomb lattice

217 citations · 560 across the 6 of their papers we have counts for

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cond-mat.mes-hall20133.2k cited

Graphene plasmonics

A. N. Grigorenko, Marco Polini, K. S. Novoselov

Two rich and vibrant fields of investigation, graphene physics and plasmonics, strongly overlap. Not only does graphene possess intrinsic plasmons that are tunable and adjustable,…

cond-mat.mes-hall201067 cited

Gauge fields and interferometry in folded graphene

Diego Rainis, Fabio Taddei, Marco Polini +3

Folded graphene flakes are a natural byproduct of the micromechanical exfoliation process. In this Letter we show by a combination of analytical and numerical methods that such sys…

cond-mat.mes-hall201044 cited

Delocalized-localized transition in a semiconductor two-dimensional honeycomb lattice

G. De Simoni, A. Singha, M. Gibertini +7

We report the magneto-transport properties of a two-dimensional electron gas in a modulation-doped AlGaAs/GaAs heterostructure subjected to a lateral potential with honeycomb geome…

cond-mat.mes-hall201030 cited

Compressibility of bilayer graphene

Giovanni Borghi, Marco Polini, Reza Asgari +1

Bilayer graphene is a recently isolated and intriguing class of many-body systems with massive chiral quasiparticles. We present theoretical results for the electronic compressibil…

cond-mat.mes-hall201060 cited

Electron-electron interactions in decoupled graphene layers

Rosario E. V. Profumo, Marco Polini, Reza Asgari +2

Multi-layer graphene on the carbon face of silicon carbide is an intriguing electronic system which typically consists of a stack of ten or more layers. Rotational stacking faults…

cond-mat.mes-hall201061 cited

Many-body orbital paramagnetism in doped graphene sheets

A. Principi, Marco Polini, G. Vignale +1

The orbital magnetic susceptibility (OMS) of a gas of noninteracting massless Dirac fermions is zero when the Fermi energy is away from the Dirac point. Making use of diagrammatic…