Decoupling of supersymmetric particles
Author(s) -
Antonio Dobado,
M. J. Herrero,
S. Peñaranda
Publication year - 1999
Publication title -
the european physical journal c
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.938
H-Index - 198
eISSN - 1434-6052
pISSN - 1434-6044
DOI - 10.1007/s100520050410
Subject(s) - superpartner , particle physics , physics , electroweak interaction , minimal supersymmetric standard model , higgs boson , supersymmetry , electroweak scale , decoupling (probability) , boson , physics beyond the standard model , gauge boson , gauge theory , control engineering , engineering
The possibility of a heavy supersymmetric spectrum at the Minimal Supersymmetric Standard Model is considered and the decoupling from the low energy electroweak scale is analyzed in detail. The formal proof of decoupling of supersymmetric particles from low energy physics is stated in terms of the effective action for the particles of the Standard Model that results by integrating out all the sparticles in the limit where their masses are larger than the electroweak scale. The computation of the effective action for the standard electroweak gauge bosons W+/-, Z and gamma is performed by integrating out all the squarks, sleptons, charginos and neutralinos to one-loop. The Higgs sector is not considered in this paper. The large sparticle masses limit is also analyzed in detail. Explicit analytical formulae for the two-point functions of the electroweak gauge bosons to be Valid in that limit are presented. Finally, the decoupling of sparticles in the S, T and U parameters is studied analitically. A discussion on how the decoupling takes place in terms of both the physical sparticle masses and the not-physical mass parameters as the mu-parameter and the soft-breaking parameters is included
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