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Related papers: The Schwinger Model in Light-Cone Gauge

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We consider constructing a canonical quantum theory of the light-cone gauge ($A_-$=0) Schwinger model in the light-cone representation. Quantization conditions are obtained by requiring that translational generators $P_+$ and $P_-$ give…

High Energy Physics - Theory · Physics 2008-11-26 Yuji Nakawaki , Gary McCartor

We discuss the bosonized Schwinger model in light-cone quantization, using discretization as an infrared regulator. We consider both the light-cone Coulomb gauge, in which all gauge freedom can be removed and a physical Hilbert space…

High Energy Physics - Theory · Physics 2009-10-30 Alex C. Kalloniatis , David G. Robertson

We describe the scalar and spinor fields on noncommutative sphere starting from canonical realizations of the enveloping algebra ${\cal A}={\cal U}{u(2))}$. The gauge extension of a free spinor model, the Schwinger model on a noncommutative…

High Energy Physics - Theory · Physics 2015-06-26 Peter Presnajder

A free spinor field on a noncommutative sphere is described starting from a canonical realization of the enveloping algebra U(u(2|1)). The gauge extension of the model - the Schwinger model on a noncommutative sphere is defined and the…

High Energy Physics - Theory · Physics 2007-05-23 H. Grosse , P. Presnajder

We present a representation independent solution to the continuum Schwinger model in light-cone ($A^+ = 0$) gauge. We then discuss the problem of finding that solution using various quantization schemes. In particular we shall consider…

High Energy Physics - Theory · Physics 2010-12-13 Gary McCartor , Yuji Nakawaki

We demonstrate that pure space-like axial gauge quantizations of gauge fields can be constructed in ways which are free from infrared divergences. We begin by constructing an axial gauge formulation in auxiliary coordinates:…

High Energy Physics - Theory · Physics 2009-10-31 Y. Nakawaki , G. McCartor

The complete exact solution of the Schwinger model with compact gauge group U(1), in the Hamiltonian approach, is presented . The compactification is imposed by demanding that the only surviving true electromagnetic degree of freedom has…

High Energy Physics - Theory · Physics 2007-05-23 Román Linares , Luis F. Urrutia , J. David Vergara

The bosonized Chiral Schwinger model (CSM) is quantized on the light-front (LF). The physical Hilbert space of CSM is obtained directly once the constraints on the LF phase space are eliminated. The discussion of the degenerate vacua and…

High Energy Physics - Theory · Physics 2009-10-31 Prem P. Srivastava

A quantization condition due to the boundary conditions and the compatification of the light cone space-time coordinate $x^-$ is identified at the level of the classical equations for the right-handed fermionic field in two dimensions. A…

High Energy Physics - Theory · Physics 2009-10-31 José Luis Cortés , Jorge Gamboa

We find a large class of quantum gauge models with massless fermions where the coupling to the gauge fields is not chirally symmetric and which nevertheless do not suffer from gauge anomalies. To be specific we study two dimensional Abelian…

High Energy Physics - Theory · Physics 2009-10-31 Harald Grosse , Edwin Langmann

The Schwinger model is studied in a finite lattice by means of the P-representation. The vacuum energy, mass gap and chiral condensate are evaluated showing good agreement with the expected values in the continuum limit.

High Energy Physics - Lattice · Physics 2010-12-17 J. M. Aroca , H. Fort , Gonzalo Alvarez-Campot

SU(2) gauge theory coupled to massless fermions in the adjoint representation is quantized in light-cone gauge by imposing the equal-time canonical algebra. The theory is defined on a space-time cylinder with "twisted" boundary conditions,…

High Energy Physics - Theory · Physics 2009-11-10 E. Vianello , G. McCartor

We present a Hamiltonian formulation of the Schwinger model on the circle in Coulomb gauge as a semi-bounded self-adjoint operator which is invariant under the modular group ${\cal M}=\Z$ of large gauge transformations. There is a…

Mathematical Physics · Physics 2012-06-19 David M. A. Stuart

The axial anomaly and fermion condensate in the light cone Schwinger model are studied following path integral methods. This formalism allows for a simple and direct calculation for these and other vacuum dependent phenomena.

High Energy Physics - Theory · Physics 2009-10-30 J. Gamboa , I. Schmidt , L. Vergara

Based on the physical projector approach, a nonpertubative quantization of the massless Schwinger model is considered which does not require any gauge fixing. The spectrum of physical states, readily identified following a diagonalization…

High Energy Physics - Theory · Physics 2017-08-23 Gabriel Y. H. Avossevou , Jan Govaerts

The massive Schwinger model is quantized on the light cone with great care on the bosonic zero modes by putting the system in a finite (light-cone) spatial box. The zero mode of $A_{-}$ survives Dirac's procedure for the constrained system…

High Energy Physics - Theory · Physics 2009-10-30 Koji Harada , Atsushi Okazaki , Masa-aki Taniguchi

The exact solution of the Schwinger model with compact gauge group U(1) is presented. The compactification is imposed by demanding that the only surviving true electromagnetic degree of freedom has angular character. Not surprinsingly, this…

High Energy Physics - Theory · Physics 2009-11-07 Roman Linares , Luis F. Urrutia , J. David Vergara

We introduce a new method to include condensates in the light-cone Hamiltonian. By using a Gaussian approximation to the ordinary vacuum in a theory close to the light front, we derive an effective Hamiltonian on the light cone, which has…

High Energy Physics - Phenomenology · Physics 2009-10-28 E. V. Prokhvatilov , H. W. L. Naus , H. --J. Pirner

Canonical methods are not sufficient to properly quantize space-like axial gauges. In this paper, we obtain guiding principles which allow the construction of an extended Hamiltonian formalism for pure space-like axial gauge fields. To do…

High Energy Physics - Theory · Physics 2009-11-10 Yuji Nakawaki , Gary McCartor

I shall recall a number of solutions to the Schwinger model in different gauges, having different boundary conditions and using different quantization surfaces. I shall discuss various properties of these solutions emphasizing the degrees…

High Energy Physics - Theory · Physics 2015-06-26 Gary McCartor
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