Dabelow L, Gies H, Knorr B. Momentum dependence of quantum critical Dirac systems. PHYSICAL REVIEW D. 2019;99(12): 125019.We analyze fermionic criticality in relativistic 2 + 1 dimensional fermion systems using the functional renormalization group (FRG), concentrating on the Gross-Neveu (chiral Ising) and the Thirring model. While a variety of methods, including the FRG, appear to reach quantitative consensus for the critical regime of the Gross-Neveu model, the situation seems more diverse for the Thirring model with different methods yielding vastly different results. We present a first exploratory FRG study of such fermion systems including momentum-dependent couplings using pseudo-spectral methods. Our results corroborate the stability ...
We report results of simulations of the 2 + 1d Thirring model with N fermion flavors, defined on a l...
We perform large-scale quantum Monte Carlo simulations of SLAC fermions on a two-dimensional square ...
The quantum critical behavior of the (2+1)-dimensional Gross-Neveu model in the vicinity of its zero...
We analyze fermionic criticality in relativistic 2+1 dimensional fermion systems using the functiona...
In this work we investigate critical phenomena in a variant of the chiral Gross-Neveu model and the ...
In this work we investigate critical phenomena in a variant of the chiral Gross-Neveu model and the ...
In this work we investigate critical phenomena in a variant of the chiral Gross-Neveu model and the ...
Contains fulltext : 207235.pdf (publisher's version ) (Open Access
Gapless Dirac fermions appear as quasiparticle excitations in various condensed-matter systems. They...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
The quantum phase transition to a Z(3)-ordered Kekule valence bond solid in two-dimensional Dirac se...
This thesis investigates the quantum field theoretical description of Dirac system at (deconfined) ...
We establish a scenario where fluctuations of new degrees of freedom at a quantum phase transition c...
We analyze emergent quantum multicriticality for strongly interacting, massless Dirac fermions in tw...
We analyze emergent quantum multicriticality for strongly interacting, massless Dirac fermions in tw...
We report results of simulations of the 2 + 1d Thirring model with N fermion flavors, defined on a l...
We perform large-scale quantum Monte Carlo simulations of SLAC fermions on a two-dimensional square ...
The quantum critical behavior of the (2+1)-dimensional Gross-Neveu model in the vicinity of its zero...
We analyze fermionic criticality in relativistic 2+1 dimensional fermion systems using the functiona...
In this work we investigate critical phenomena in a variant of the chiral Gross-Neveu model and the ...
In this work we investigate critical phenomena in a variant of the chiral Gross-Neveu model and the ...
In this work we investigate critical phenomena in a variant of the chiral Gross-Neveu model and the ...
Contains fulltext : 207235.pdf (publisher's version ) (Open Access
Gapless Dirac fermions appear as quasiparticle excitations in various condensed-matter systems. They...
In this thesis, we perform a comprehensive renormalization group analysis of two- and three-dimensio...
The quantum phase transition to a Z(3)-ordered Kekule valence bond solid in two-dimensional Dirac se...
This thesis investigates the quantum field theoretical description of Dirac system at (deconfined) ...
We establish a scenario where fluctuations of new degrees of freedom at a quantum phase transition c...
We analyze emergent quantum multicriticality for strongly interacting, massless Dirac fermions in tw...
We analyze emergent quantum multicriticality for strongly interacting, massless Dirac fermions in tw...
We report results of simulations of the 2 + 1d Thirring model with N fermion flavors, defined on a l...
We perform large-scale quantum Monte Carlo simulations of SLAC fermions on a two-dimensional square ...
The quantum critical behavior of the (2+1)-dimensional Gross-Neveu model in the vicinity of its zero...