Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/11223
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Type: Journal article
Title: Regularization-independent studies of nonperturbative field theory
Author: Kizilersu, A.
Schreiber, A.
Williams, A.
Citation: Physics Letters B: Nuclear Physics and Particle Physics, 2001; 499(03-Apr):261-269
Publisher: Elsevier Science BV
Issue Date: 2001
ISSN: 0370-2693
Statement of
Responsibility: 
Aye Kızılersü, Andreas W. Schreiber and Anthony G. Williams
Abstract: We propose a regularization-independent method for studying a renormalizable field theory nonperturbatively through its Dyson–Schwinger equations. Using QED4 as an example, we show how the coupled equations determining the nonperturbative fermion and photon propagators can be written entirely in terms of renormalized quantities, which renders the equations manifestly finite in a regularization-independent manner. As an illustration of the technique, we apply it to a study of the fermion propagator in quenched QED4 with the Curtis–Pennington electron–photon vertex. At large momenta the mass function, and hence the anomalous mass dimension γm(α), is calculated analytically and we find excellent agreement with previous work. Finally, we show that for the CP vertex the perturbation expansion of γm(α) has a finite radius of convergence.
Description: Copyright © 2000. Submitted to Cornell University’s online archive www.arXiv.org in 2000 by A. W. Schreiber. Post-print sourced from www.arxiv.org.
DOI: 10.1016/S0370-2693(01)00022-3
Description (link): http://www.elsevier.com/wps/find/journaldescription.cws_home/505706/description#description
Published version: http://dx.doi.org/10.1016/s0370-2693(01)00022-3
Appears in Collections:Aurora harvest 2
Special Research Centre for the Subatomic Structure of Matter publications

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