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The divergence of the axial current is used to relate the spatial derivative of the fermion density to the bare fermion mass and scalar/pseudoscalar condensates in 1+1 dimensional Gross-Neveu models. This serves as a novel test of known…

High Energy Physics - Theory · Physics 2008-11-26 Felix Karbstein , Michael Thies

We consider the $N$-components 3-dimensional massive Gross-Neveu model compactified in one spatial direction, the system being constrained to a slab of thickness $L$. We derive a closed formula for the renormalized $L$-dependent four-point…

High Energy Physics - Phenomenology · Physics 2009-11-10 A. P. C. Malbouisson , J. M. C. Malbouisson , A. E. Santana , J. C. da Silva

In certain 1+1 dimensional field theoretic toy models, one can go all the way from microscopic quarks via the hadron spectrum to the properties of hot and dense baryonic matter in an essentially analytic way. This "miracle" is illustrated…

High Energy Physics - Theory · Physics 2016-11-23 Verena Schoen , Michael Thies

We explore the phase structure of the 1+1 dimensional Gross-Neveu model at finite number of fermion flavors using lattice field theory. Besides a chirally symmetric phase and a homogeneously broken phase we find evidence for the existence…

High Energy Physics - Lattice · Physics 2022-09-21 Laurin Pannullo , Julian Lenz , Marc Wagner , Björn Wellegehausen , Andreas Wipf

We consider the Gross-Neveu model with a continuous chiral symmetry in two and three spacetime dimensions at zero and finite temperature. In order to study long-range phase coherence, we construct an effective low-energy Lagrangian for the…

High Energy Physics - Theory · Physics 2007-05-23 Jens O. Andersen

We investigate the Gross-Neveu model on the lattice at finite temperature and chemical potential in the limit of an infinite number of fermion flavours. We check the universality of the continuum limit of staggered and overlap fermions at…

High Energy Physics - Lattice · Physics 2008-11-26 Philippe de Forcrand , Urs Wenger

We analytically investigate the 2-dimensional Gross-Neveu model at finite temperature and density using Wilson fermion action. The relation between the phase structure on the lattice and that in the continuum is clarified.

High Energy Physics - Lattice · Physics 2009-10-31 T. Izubuchi , J. Noaki , A. Ukawa

We study an intersecting D-brane model which at low energies describes (1+1)-dimensional chiral fermions localized at defects on a stack of N_c D4-branes. Fermions at different defects interact via exchange of massless (4+1)-dimensional…

High Energy Physics - Theory · Physics 2008-11-26 E. Antonyan , J. A. Harvey , D. Kutasov

We investigate the finite-temperature and -density chiral Gross-Neveu model with an axial U$_A$(1) symmetry in $1+1$ dimensions on the lattice. In the limit where the number of flavors $N_\mathrm{f}$ tends to infinity the continuum model…

High Energy Physics - Lattice · Physics 2022-03-03 Julian J. Lenz , Michael Mandl , Andreas Wipf

We perform a 1/N-expansion of the partition function of the massive Gross-Neveu model in 1+1 dimensions. The procedure allows for the inclusion of the contribution of scalar and pseudoscalar composites (of order 1/N) to the equation of…

High Energy Physics - Phenomenology · Physics 2009-10-28 A. Barducci , R. Casalbuoni , R. Gatto , M. Modugno , G. Pettini

We derive a new exact self-consistent crystalline condensate in the 1+1 dimensional chiral Gross-Neveu model. This also yields a new exact crystalline solution for the one dimensional Bogoliubov-de Gennes equations and the Eilenberger…

High Energy Physics - Theory · Physics 2008-11-26 Gokce Basar , Gerald V. Dunne

We show that a Wilson-type discretization of the Gross-Neveu model, a fermionic N-flavor quantum field theory displaying asymptotic freedom and chiral symmetry breaking, can serve as a playground to explore correlated symmetry-protected…

Quantum Gases · Physics 2018-11-14 A. Bermudez , E. Tirrito , M. Rizzi , M. Lewenstein , S. Hands

We investigate the phase structure of the 2+1-dimensional Gross-Neveu model in the large-Nf limit, where Nf denotes the number of fermion flavors. We discuss two different fermion representations and their implication on the interpretation…

High Energy Physics - Lattice · Physics 2020-12-02 Marc Winstel , Jonas Stoll , Marc Wagner

A four-fermion model in 2+1 dimensions describing N Dirac fermions interacting via SU(N) invariant N^2-1 four-fermion interactions is solved in the leading order of the 1/N expansion. The 1/N expansion corresponds to 't Hoofts topological…

High Energy Physics - Theory · Physics 2007-05-23 Manuel Reenders

In the limit of many fermion flavors it is demonstrated that the sextic Gross-Neveu theory in three dimensions displays a line of interacting UV fixed points, characterised by an exactly marginal sextic interaction. We determine the…

High Energy Physics - Theory · Physics 2023-05-30 Charlie Cresswell-Hogg , Daniel F. Litim

Formation of fermion bag solitons is an important paradigm in the theory of hadron structure. We report here on our non-perturbative analysis of this phenomenon in the 1+1 dimensional massive Gross-Neveu model, in the large $N$ limit. Our…

High Energy Physics - Theory · Physics 2009-11-11 Joshua Feinberg , Shlomi Hillel

We revisit the Gross-Neveu model with N fermion flavors in 1+1 dimensions and compute its phase diagram at finite temperature and chemical potential in the large-N limit. To this end, we double the number of fermion degrees of freedom in a…

High Energy Physics - Phenomenology · Physics 2014-10-31 Jens Braun , Stefan Finkbeiner , Felix Karbstein , Dietrich Roscher

The properties of the two-flavored Gross-Neveu model in the (1+1)-dimensional $R^1\times S^1$ spacetime with compactified space coordinate are investigated in the presence of the isospin chemical potential $\mu_I$. The consideration is…

High Energy Physics - Phenomenology · Physics 2010-05-12 D. Ebert , K. G. Klimenko , A. V. Tyukov , V. Ch. Zhukovsky

We prove that the non-commutative Gross-Neveu model on the two-dimensional Moyal plane is renormalizable to all orders. Despite a remaining UV/IR mixing, renormalizability can be achieved. However, in the massive case, this forces us to…

Mathematical Physics · Physics 2008-11-26 Fabien Vignes-Tourneret

Analyzed is the effective potential of D-dimensional thermodynamic Gross-Neveu model (defined by large-N leading order, $2\leq D<4$) under constant electromagnetic field ($\vec{E}\cdot\vec{B}=0$). The potential is derived from a thermal…

High Energy Physics - Phenomenology · Physics 2009-10-30 Shinya Kanemura , Haru-Tada Sato , Hiroshi Tochimura