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- W2066241985 abstract "We consider minimal 5-dimensional extensions of the standard model compactified on an ${S}^{1}{/Z}_{2}$ orbifold, in which the $mathrm{SU}{(2)}_{L}$ and $mathrm{U}{(1)}_{Y}$ gauge fields and Higgs bosons may or may not all propagate in the fifth dimension while the observable matter is always assumed to be confined to a 4-dimensional subspace. We pay particular attention to consistently quantize the higher-dimensional models in the generalized ${R}_{ensuremath{xi}}$ gauge and derive analytic expressions for the mass spectrum of the resulting Kaluza-Klein states and their couplings to matter. Based on recent data from electroweak precision tests, we improve previous limits obtained in the 5-dimensional standard model with a common compactification radius and extend our analysis to other possible 5-dimensional standard-model constructions. We find that the usually derived lower bound of $ensuremath{sim}4 mathrm{TeV}$ on a universal compactification scale may be considerably relaxed to $ensuremath{sim}3 mathrm{TeV}$ in a minimal scenario, in which the $mathrm{SU}{(2)}_{L}$ gauge boson is the only field that feels the presence of the fifth dimension." @default.
- W2066241985 created "2016-06-24" @default.
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- W2066241985 date "2002-04-09" @default.
- W2066241985 modified "2023-09-23" @default.
- W2066241985 title "Minimal higher-dimensional extensions of the standard model and electroweak observables" @default.
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- W2066241985 doi "https://doi.org/10.1103/physrevd.65.085037" @default.
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