We theoretically study the competition between two possible exotic superconducting orders that may occur in graphene-like systems, assuming dominant nearest-neighbor attraction: the gapless hidden superconducting order, which renormalizes the Fermi velocity, and the Kekule order, which opens a superconducting gap. We perform an analysis within the mean-field theory for Dirac electrons, at finite-temperature and finite chemical potential, as well as at half filling and zero-temperature, first excluding the possibility of the coexistence of the two orders. In that case, we find the dependence of the critical (more precisely, crossover) temperature and the critical interaction on the chemical potential. As a result of this analysis, we find th...
International audienceThe experimentally measured phase diagram of cuprate superconductors in the te...
Graphene, a monolayer of graphite, opened a new frontier in physics with reduced dimen- sionality. D...
We consider interacting (2+1)-dimensional Dirac fermions with competing symmetry-breaking electronic...
We theoretically study the competition between two possible exotic superconducting orders that may o...
In this thesis, we study the electron-electron interaction on the graphene honeycomb lattice theoret...
In this Master's thesis, I investigate the possibility to build a Dirac superconductor under supervi...
In this Brief Report, we analyze the superconducting properties of doped single-and double-layer gra...
In this Brief Report, we analyze the superconducting properties of doped single- and double-layer gr...
In this Brief Report, we analyze the superconducting properties of doped single- and double-layer gr...
In this Brief Report, we analyze the superconducting properties of doped single- and double-layer gr...
We discuss a pairing mechanism in interacting two-dimensional multipartite lattices that intrinsical...
Quantum many-body systems exhibit a wide array of possible ordered phases at low temperatures. In th...
Performing a leading-order renormalization group analysis, here we compute the effects of generic lo...
Unconventional superconductors represent one of the most intriguing quantum states of matter. In par...
Electronic and transport properties of Graphene, a one-atom thick crystalline material, are sensitiv...
International audienceThe experimentally measured phase diagram of cuprate superconductors in the te...
Graphene, a monolayer of graphite, opened a new frontier in physics with reduced dimen- sionality. D...
We consider interacting (2+1)-dimensional Dirac fermions with competing symmetry-breaking electronic...
We theoretically study the competition between two possible exotic superconducting orders that may o...
In this thesis, we study the electron-electron interaction on the graphene honeycomb lattice theoret...
In this Master's thesis, I investigate the possibility to build a Dirac superconductor under supervi...
In this Brief Report, we analyze the superconducting properties of doped single-and double-layer gra...
In this Brief Report, we analyze the superconducting properties of doped single- and double-layer gr...
In this Brief Report, we analyze the superconducting properties of doped single- and double-layer gr...
In this Brief Report, we analyze the superconducting properties of doped single- and double-layer gr...
We discuss a pairing mechanism in interacting two-dimensional multipartite lattices that intrinsical...
Quantum many-body systems exhibit a wide array of possible ordered phases at low temperatures. In th...
Performing a leading-order renormalization group analysis, here we compute the effects of generic lo...
Unconventional superconductors represent one of the most intriguing quantum states of matter. In par...
Electronic and transport properties of Graphene, a one-atom thick crystalline material, are sensitiv...
International audienceThe experimentally measured phase diagram of cuprate superconductors in the te...
Graphene, a monolayer of graphite, opened a new frontier in physics with reduced dimen- sionality. D...
We consider interacting (2+1)-dimensional Dirac fermions with competing symmetry-breaking electronic...