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- W2090940078 abstract "It is argued that fine tuning of a minimal set of parameters, needed to fix the hierarchy of gauge-boson masses and a knowledge of intermediate symmetry groups, leads to natural mass scales for physical Higgs bosons in grand unified theories. This is applied to $ensuremath{Delta}B=2$ transitions in models based on SU(5), SO(10), SU(16), and ${[mathrm{SU}(2N)]}^{4}$. It turns out that the Higgs bosons which mediate $ensuremath{Delta}B=2$ neutron-antineutron and hydrogen-antihydrogen oscillations become superheavy, and so such transitions can be observable only in theories with low unification scales, such as SU(16) and ${[mathrm{S}mathrm{U}(8)]}^{4}$, if we adhere to the hypothesis of minimal fine tuning." @default.
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- W2090940078 title "Higgs-boson effects in grand unified theories" @default.
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- W2090940078 doi "https://doi.org/10.1103/physrevd.27.1601" @default.
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