Electroweak symmetry breaking and cold dark matter from hidden sector strong interaction
We consider a hidden sector with new confining gauge theory similar to ordinary QCD, and show that the lightest mesons in the hidden sector (hidden sector pion Delta *p(h)) are automatically stable as a consequence of flavor conservation of hidden sector strong interaction.
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Veröffentlicht in: | 5th International Workshop on The Dark Side Of The Universe 2009-01, Vol.1178 (1), p.37-43 |
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container_title | 5th International Workshop on The Dark Side Of The Universe |
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creator | Ko, Pyungwon |
description | We consider a hidden sector with new confining gauge theory similar to ordinary QCD, and show that the lightest mesons in the hidden sector (hidden sector pion Delta *p(h)) are automatically stable as a consequence of flavor conservation of hidden sector strong interaction. |
doi_str_mv | 10.1063/1.3264554 |
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subjects | CHIRAL SYMMETRY FLAVOR MODEL GAUGE INVARIANCE NONLUMINOUS MATTER PHYSICS OF ELEMENTARY PARTICLES AND FIELDS PIONS QUANTUM CHROMODYNAMICS STRONG INTERACTIONS SYMMETRY BREAKING |
title | Electroweak symmetry breaking and cold dark matter from hidden sector strong interaction |
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