Title of article :
Two-loop renormalization in the Standard Model. Part II: Renormalization procedures and computational techniques Original Research Article
Author/Authors :
Stefano Actis، نويسنده , , Giampiero Passarino، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
65
From page :
35
To page :
99
Abstract :
In general aspects of the renormalization of a spontaneously broken gauge theory have been introduced. Here, in , two-loop renormalization is introduced and discussed within the context of the minimal Standard Model. Therefore, this paper deals with the transition between bare parameters and fields to renormalized ones. The full list of one- and two-loop counterterms is shown and it is proven that, by a suitable extension of the formalism already introduced at the one-loop level, two-point functions suffice in renormalizing the model. The problem of overlapping ultraviolet divergencies is analyzed and it is shown that all counterterms are local and of polynomial nature. The original program of ʹt Hooft and Veltman is at work. Finite parts are written in a way that allows for a fast and reliable numerical integration with all collinear logarithms extracted analytically. Finite renormalization, the transition between renormalized parameters and physical (pseudo-)observables, will be discussed in where numerical results, e.g. for the complex poles of the unstable gauge bosons, will be shown. An attempt will be made to define the running of the electromagnetic coupling constant at the two-loop level.
Keywords :
Renormalization , Multi-loop calculations , Feynman diagrams
Journal title :
Nuclear Physics B
Serial Year :
2007
Journal title :
Nuclear Physics B
Record number :
876496
Link To Document :
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