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We investigate the Gross-Neveu model in $2+1$ dimensions in a constant and homogeneous magnetic field using one reducible flavor of overlap fermions. Our lattice simulations suggest that the magnetic catalysis phenomenon, i.e., an increase…

High Energy Physics - Lattice · Physics 2022-11-21 Michael Mandl , Julian J. Lenz , Andreas Wipf

We investigate the stability of an inhomogeneous chiral condensed phase against low energy fluctuations about a spatially modulated order parameter. This phase corresponds to the so-called dual chiral density wave in the context of quark…

High Energy Physics - Phenomenology · Physics 2015-08-31 Tong-Gyu Lee , Eiji Nakano , Yasuhiko Tsue , Toshitaka Tatsumi , Bengt Friman

We study the phase diagram of the Gross-Neveu model in d=2+1 space-time dimensions in the plane spanned by temperature and the number of massless fermion flavors. We use a functional renormalization group approach based on a nonperturbative…

High Energy Physics - Phenomenology · Physics 2014-09-09 Daniel D. Scherer , Jens Braun , Holger Gies

The quantum critical behavior of the 2+1 dimensional Gross--Neveu model in the vicinity of its zero temperature critical point is considered. The model is known to be renormalisable in the large $N$ limit, which offers the possibility to…

Strongly Correlated Electrons · Physics 2011-12-22 H. Chamati , N. S. Tonchev

The generalization of the Gross-Neveu model for noncommutative 3+1 space-time has been analyzed. We find indications that the chiral symmetry breaking occurs for an inhomogeneous background as in the LOFF phase in condensed matter.

High Energy Physics - Theory · Physics 2009-11-10 Paolo Castorina , Giuseppe Riccobene , Dario Zappala'

We discuss the chiral symmetry restoration at high temperature and chemical potential for a four-fermion interaction theory in arbitrary dimensions ($2\leq D<4$). To investigate the ground state of the theory we calculate the effective…

High Energy Physics - Phenomenology · Physics 2007-05-23 Tomohiro Inagaki

We study the (2+1)-dimensional Gross-Neveu model at non-zero chemical potential and subjected to a homogeneous background magnetic field. We do so both analytically, in the limit of an infinite number of fermion flavors in which mean-field…

High Energy Physics - Lattice · Physics 2023-10-23 Michael Mandl , Julian J. Lenz

Studies of the QCD phase diagram must properly include nucleonic degrees of freedom and their thermodynamics in the range of baryon chemical potentials characteristic of nuclear matter. A useful framework for incorporating relevant nuclear…

High Energy Physics - Phenomenology · Physics 2014-01-27 Matthias Drews , Thomas Hell , Bertram Klein , Wolfram Weise

We study the $2d$ chiral Gross-Neveu model at finite temperature $T$ and chemical potential $\mu$. The analysis is performed by relating the theory to a $SU(N)\times U(1)$ Wess-Zumino-Witten model with appropriate levels and global…

High Energy Physics - Theory · Physics 2024-01-25 Riccardo Ciccone , Lorenzo Di Pietro , Marco Serone

We extract scattering phases for fermion-fermion scattering from Monte Carlo simulations of the two-dimensional Gross-Neveu model. This is done by means of L\"uscher's method, which exploits the volume dependence of the energies of…

High Energy Physics - Lattice · Physics 2009-10-28 M. Goeckeler , H. A. Kastrup , J. Viola , J. Westphalen

By critical analyses of the order parameter of symmetry breaking, we have researched the phase transitions at high density in D=2 and D=3 Gross-Neveu (GN) model and shown that the gap equation obeyed by the dynamical fermion mass has the…

High Energy Physics - Theory · Physics 2018-01-17 Bang-Rong Zhou

We consider a version of the Gross-Neveu model in 1+1 dimensions with discrete chiral and continuous flavor symmetry (isospin). In 2+1 dimensions, this model is known as chiral Heisenberg Gross-Neveu model. Spontaneous symmetry breaking and…

High Energy Physics - Theory · Physics 2020-11-18 Michael Thies

We describe a Horava-Lifshitz-like reformulated four-fermion Gross-Neveu model describing the dynamics of two-component spinors in (2+1)-dimensional space-time. Within our study, we introduce the Lagrange multiplier, study the gap equation…

High Energy Physics - Theory · Physics 2017-03-31 A. M. Lima , T. Mariz , R. Martinez , J. R. Nascimento , A. Yu. Petrov , R. F. Ribeiro

We investigate the two-dimensional lattice Gross-Neveu model, using the domain-wall fermion formulation, as a toy model of lattice QCD. We study features of the phase diagram related to the mechanism of chiral symmetry restoration, and find…

High Energy Physics - Lattice · Physics 2015-06-25 Taku Izubuchi , Kei-ichi Nagai

The concept of dimensional reduction in the high temperature regime is generalized to static Green's functions of composite operators that contain fermionic fields. The recognition of a natural kinematic region where the lowest Matsubara…

High Energy Physics - Phenomenology · Physics 2010-11-01 Suzhou Huang , Marcello Lissia

We investigate a class of four-fermion theories which includes well-known models like the Gross-Neveu model and the Thirring model. In three spacetime dimensions, they are used to model interesting solid state systems like high temperature…

High Energy Physics - Lattice · Physics 2016-11-02 Daniel Schmidt , Björn Wellegehausen , Andreas Wipf

Discrete symmetry breaking and possible restoration at finite temperature $T$ are analysed in 2D Gross-Neveu model by the real-time thermal field theory in the fermion bubble approximation. The dynamical fermion mass $m$ is proven to be…

High Energy Physics - Theory · Physics 2008-11-26 Zhou Bang-Rong

We study the phases of Yukawa theories at weak coupling and the Gross-Neveu models in AdS spaces at zero and finite temperature. Following the method used in \cite{Kakkar:2022hub}, we first compute the one-loop partition functions, using…

High Energy Physics - Theory · Physics 2023-06-21 Astha Kakkar , Swarnendu Sarkar

We consider the classical XY model (O(2) nonlinear sigma-model) on a class of lattices with the (fractal) dimensions 1<D<2. The Berezinskii's harmonic approximation suggests that the model undergoes a phase transition in which the low…

Statistical Mechanics · Physics 2009-10-30 Tohru Koma , Hal Tasaki

Using analogies between flow equations from the Functional Renormalization Group and flow equations from (numerical) fluid dynamics we investigate the effects of bosonic fluctuations in a bosonized Gross-Neveu model -- namely the…

High Energy Physics - Phenomenology · Physics 2021-08-25 Jonas Stoll , Niklas Zorbach , Adrian Koenigstein , Martin J. Steil , Stefan Rechenberger