The low-energy theory of graphene exhibits spontaneous chiral symmetry breaking due to pairing of quasiparticles and holes, corresponding to a semimetal-insulator transition at strong Coulomb coupling. We report a lattice Monte Carlo study of the critical exponents of this transition as a function of the number of Dirac flavors Nf, finding δ=1.25±0.05 for Nf =0, δ=2.26±0.06 for Nf =2 and δ=2.62±0.11 for Nf =4, with γ1 throughout. We compare our results with recent analytical work for graphene and closely related systems and discuss scenarios for the fate of the chiral transition at finite temperature and carrier density, an issue of relevance for upcoming experiments with suspended graphene samples
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We show that the emergent relativistic symmetry of electrons in graphene near its quantum critical p...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We discuss the Monte Carlo method of simulating lattice field theories as a means of studying the lo...
We present evidence, from lattice Monte Carlo simulations of the phase diagram of graphene as a func...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
We study excitonic pairing in quasi-two-dimensional degenerate semimetals such as graphite, where th...
We report on Hybrid Monte Carlo simulations at finite spin density of the p-band electrons in monola...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
We report on Hybrid Monte Carlo simulations at finite spin density of the p-band electrons in monola...
We report on Hybrid Monte Carlo simulations at finite spin density of the p-band electrons in monola...
Since its discovery in 2004, graphene, a two-dimensional hexagonal carbon allotrope, has generated g...
We discuss the simulation of the low-energy effective field theory (EFT) for graphene in the presenc...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We show that the emergent relativistic symmetry of electrons in graphene near its quantum critical p...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We discuss the Monte Carlo method of simulating lattice field theories as a means of studying the lo...
We present evidence, from lattice Monte Carlo simulations of the phase diagram of graphene as a func...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
We study excitonic pairing in quasi-two-dimensional degenerate semimetals such as graphite, where th...
We report on Hybrid Monte Carlo simulations at finite spin density of the p-band electrons in monola...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
We report on Hybrid Monte Carlo simulations at finite spin density of the p-band electrons in monola...
We report on Hybrid Monte Carlo simulations at finite spin density of the p-band electrons in monola...
Since its discovery in 2004, graphene, a two-dimensional hexagonal carbon allotrope, has generated g...
We discuss the simulation of the low-energy effective field theory (EFT) for graphene in the presenc...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We show that the emergent relativistic symmetry of electrons in graphene near its quantum critical p...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...