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| Report/Journal Article | PUBDB-2017-07028 |
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1997
Inst.
Woodbury, NY
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Please use a persistent id in citations: doi:10.1103/PhysRevD.55.6253 doi:10.3204/PUBDB-2017-07028
Report No.: DESY-96-114; FTUV-96-37; IEM-FT-134-96; IFIC-96-45; hep-ph/9606438
Abstract: Effective thermal masses of bosonic particles in a plasma play an important role in many different phenomena. We compute them in general supersymmetric models at leading order. The origin of different corrections is explicitly shown for the formulas to be applicable when some particles decouple. The correct treatment of Boltzmann decoupling in the presence of trilinear couplings and mass mixing is also discussed. As a relevant example, we present results for the Minimal Supersymmetric Standard Model.
Keyword(s): electroweak interaction ; supersymmetry: symmetry breaking ; boson: mass spectrum ; mass spectrum: boson ; finite temperature ; plasma ; decoupling ; decoupling: coupling ; mass: interference ; interference: mass
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