In this work, we have investigated the spectral function of graphene on a monolayer of intercalated gold on Ru(0001) using angle-resolved photoemission spectroscopy (ARPES). The intercalation leads to a decoupling of the graphene film, as documented by emergence of the characteristic linear π-bands near the Fermi level. However, a band gap at the band crossing is observed. We relate this gap opening to the broken symmetry of the two carbon sublattices, induced by the special lattice mismatch of the graphene and the intercalated gold monolayer
The electronic structures of Au monolayers on the Ru(0001) and graphene-coated Ru(0001) su...
A graphene monolayer on single crystal Ir(111) has been studied using angle-resolved photoemission s...
We present a theoretical modeling of the energy-loss spectroscopy data for monolayer graphene (MLG) ...
In this work, we have investigated the spectral function of graphene on a monolayer of intercalated ...
7The intercalation mechanism of Au at the graphene-Ru (0001) interface is studied at elevated temper...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
We study the formation of epitaxial graphene on Ru(0001) using fast x-ray photoelectron spectroscopy...
Realization of a free-standing graphene is always a demanding task. Here we use scanning probe micro...
This is a theoretical investigation where Density Functional Theory (DFT) has been used in studying ...
The appearance of massless Dirac fermions in graphene requires two equivalent carbon sublattices of ...
Both Ni and Pb intercalation reactions at graphene/Ru(0001) interface were studied by low energy ele...
By combining angle-resolved photoemission spectroscopy and scanning tunneling microscopy we reveal t...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
The intercalation process of iron atoms in the interface between graphene and Ru(0001) was systemati...
The electronic structures of Au monolayers on the Ru(0001) and graphene-coated Ru(0001) su...
A graphene monolayer on single crystal Ir(111) has been studied using angle-resolved photoemission s...
We present a theoretical modeling of the energy-loss spectroscopy data for monolayer graphene (MLG) ...
In this work, we have investigated the spectral function of graphene on a monolayer of intercalated ...
7The intercalation mechanism of Au at the graphene-Ru (0001) interface is studied at elevated temper...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
We study the formation of epitaxial graphene on Ru(0001) using fast x-ray photoelectron spectroscopy...
Realization of a free-standing graphene is always a demanding task. Here we use scanning probe micro...
This is a theoretical investigation where Density Functional Theory (DFT) has been used in studying ...
The appearance of massless Dirac fermions in graphene requires two equivalent carbon sublattices of ...
Both Ni and Pb intercalation reactions at graphene/Ru(0001) interface were studied by low energy ele...
By combining angle-resolved photoemission spectroscopy and scanning tunneling microscopy we reveal t...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
We report on the structural and electronic properties of an artificial graphene/Ni(111) system obtai...
The intercalation process of iron atoms in the interface between graphene and Ru(0001) was systemati...
The electronic structures of Au monolayers on the Ru(0001) and graphene-coated Ru(0001) su...
A graphene monolayer on single crystal Ir(111) has been studied using angle-resolved photoemission s...
We present a theoretical modeling of the energy-loss spectroscopy data for monolayer graphene (MLG) ...