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Dobado González, Antonio and Herrero, M. J. and Peñaranda , Siannah (2000) The SM as the quantum lowenergy effective theory of the MSSM. European Physical Journal C, 12 (4). pp. 673700. ISSN 14346044
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Official URL: http://link.springer.com/article/10.1007%2Fs100520000263?LI=true
URL  URL Type 

http://link.springer.com  Publisher 
http://arxiv.org/abs/hepph/9903211  Organisation 
Abstract
In the framework of the minimal supersymmetric standard model we compute the oneloop effective action for the electroweak bosons obtained after integrating out the different sleptons, squarks, neutralinos and charginos, and present the result in terms of the physical sparticle masses. In addition we study the asymptotic behavior of the two, three and fourpoint Green's functions with external electroweak bosons in the limit where the physical sparticle masses are very large in comparison with the electroweak scale. We find that in this limit all the effects produced by the supersymmetric particles can either be absorbed in the standard model parameters and gauge bosons wave functions, or else they are suppressed by inverse powers of the supersymmetric particle masses. This work, therefore, completes the proof of decoupling of the heavy supersymmetric particles from the standard ones in the electroweak bosons effective action and in the sense of the AppelquistCarazzone theorem; we started this proof in a previous work. From the point of view of effective field theories this work can be seen as a (partial) proof that the SM can indeed be obtained from the MSSM as the quantum lowenergy effective theory of the latter when the SUSY spectra are much heavier than the electroweak scale.
Item Type:  Article 

Additional Information:  © SpringerVerlag 2000. 
Uncontrolled Keywords:  Ultra Heavy Fermions, Higgs Bosons, Weak Interactions, OneLoop, Supersymmetric Models, Standard Model, Weinberg Model, Physics, Fields, Limit 
Subjects:  Sciences > Physics 
ID Code:  22695 
Deposited On:  05 Sep 2013 18:10 
Last Modified:  07 Jul 2015 08:39 
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