The problem of constructing a sensible physical theory out of a nonrenormalizable classical action is discussed and instanced in the paradigmatic case of the nonlinear sigma model. At variance with the approach of algebraic renormalization, the perturbative expansion in $\hbar$ is not constructed on the most general classical action, where each new independent divergent amplitude induces a novel parameter. Instead a solution is searched where the number of free parameters is fixed and all the requirements associated to symmetry properties, defining equations, locality, physical unitarity are met. Once these conditions are obeyed, the theory can be tested experimentally. This program can be realized in the case of the nonlinear sigma model. This is achieved if one looks at the fields as parameters of a gauge field of zero strength (flat connection). In this important example, some technical items are developed which will be useful in other more complex models (e.g. massive Yang-Mills theory) as local functional equations, hierarchy, weak power-counting. The final result is a model depending on two parameters: the v.e.v. of the spontaneous breakdown of symmetry and the scale of the radiative corrections. The subtraction of the divergences is performed in dimensional regularization by minimal subtraction on the properly normalized 1-PI amplitudes.

A new approach to nonrenormalizable theories / R. Ferrari, D. Bettinelli, A. Quadri - In: Les rencontres de physique de la Vallée d'Aoste : results and perspectives in particle physics / [a cura di] M. Greco. - Frascati : INFN. Laboratori Nazionali di Frascati, 2007. - ISBN 978-88-86409-49-4. - pp. 551-572 (( convegno Les rencontres de physique de la Vallée d'Aoste : results and perspectives in particle physics tenutosi a La Thuile, Aosta nel 2007.

A new approach to nonrenormalizable theories

R. Ferrari
Primo
;
D. Bettinelli
Secondo
;
A. Quadri
Ultimo
2007

Abstract

The problem of constructing a sensible physical theory out of a nonrenormalizable classical action is discussed and instanced in the paradigmatic case of the nonlinear sigma model. At variance with the approach of algebraic renormalization, the perturbative expansion in $\hbar$ is not constructed on the most general classical action, where each new independent divergent amplitude induces a novel parameter. Instead a solution is searched where the number of free parameters is fixed and all the requirements associated to symmetry properties, defining equations, locality, physical unitarity are met. Once these conditions are obeyed, the theory can be tested experimentally. This program can be realized in the case of the nonlinear sigma model. This is achieved if one looks at the fields as parameters of a gauge field of zero strength (flat connection). In this important example, some technical items are developed which will be useful in other more complex models (e.g. massive Yang-Mills theory) as local functional equations, hierarchy, weak power-counting. The final result is a model depending on two parameters: the v.e.v. of the spontaneous breakdown of symmetry and the scale of the radiative corrections. The subtraction of the divergences is performed in dimensional regularization by minimal subtraction on the properly normalized 1-PI amplitudes.
Teorie di campo relativistiche ; rinormalizzazione ; modello sigma ; regolarizzazione dimensionale
Settore FIS/02 - Fisica Teorica, Modelli e Metodi Matematici
2007
Istituto Nazionale di Fisica Nucleare
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/37781
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