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- W2023359310 abstract "We consider the U$(1)ifmmodetimeselsetexttimesfi{}mathrm{SU}(2)ifmmodetimeselsetexttimesfi{}mathrm{SU}(3)$ gauge theory and use the one-loop renormalization group equation for the Higgs coupling $ensuremath{lambda}$ as a function of $ensuremath{epsilon}{=g}_{t}^{2}{/g}_{1}^{2}.$ The behavior of the function $x(ensuremath{epsilon})=ensuremath{lambda}(ensuremath{epsilon}{)/g}_{1}^{2}$ at large $ensuremath{epsilon}$ is studied. We estimate upper bounds on both Higgs boson ${(m}_{H})$ and top quark ${(m}_{t})$ masses which depend upon the embedding scales $ensuremath{Lambda}$ on which a nonstandard new physics appears. Thus, for $ensuremath{Lambda}=1$ TeV one finds ${m}_{H}ensuremath{simeq}123$ GeV at ${m}_{t}=180$ GeV. In our picture the Higgs particle should not be much heavier than 0.3 TeV. If we expect that the new physics has to appear in the 1 TeV region, our model gives roughly the same upper bound on the Higgs boson mass in the range of the top quark mass between 180 GeV and 200 GeV. Searching for the physical Higgs boson at the CERN LHC (the ATLAS program) would allow us to indicate where the new unexpected physics has to be natural." @default.
- W2023359310 created "2016-06-24" @default.
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- W2023359310 date "1997-05-01" @default.
- W2023359310 modified "2023-09-25" @default.
- W2023359310 title "Higgs boson coupling behavior at large top quark coupling in the standard model" @default.
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- W2023359310 doi "https://doi.org/10.1103/physrevd.55.5804" @default.
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