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AbstractAbstract
[en] Low- and intermediate mass Higgs bosons decay preferably into fermion pairs. The one-loop electroweak corrections to the respective decay rates are dominated by a flavour-independent term of O(GFmt2). We calculate the two-loop gluon correction to this term. It turns out that this correction screens the leading high-mt behaviour of the one-loop result by roughly 10%. We also present the two-loop QCD correction to the contribution induced by a pair of fourth-generation quarks with arbitrary masses. As expected, the inclusion of the QCD correction considerably reduces the renormalization-scheme dependence of the prediction. (orig.)
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May 1994; 20 p; HEP-PH--9405299; ISSN 0418-9833; 

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CORRECTIONS, ELECTROMAGNETIC INTERACTIONS, FERMI INTERACTIONS, FERMIONS, FEYNMAN DIAGRAM, HIGGS BOSONS, HIGGS MODEL, LEPTONIC DECAY, PARTICLE WIDTHS, PERTURBATION THEORY, QUANTUM CHROMODYNAMICS, QUANTUM ELECTRODYNAMICS, QUARKS, RADIATIVE CORRECTIONS, RENORMALIZATION, REST MASS, STANDARD MODEL, SU-2 GROUPS, TOP PARTICLES, U-1 GROUPS, WEAK PARTICLE DECAY, WEINBERG LEPTON MODEL
BASIC INTERACTIONS, DECAY, DIAGRAMS, ELECTRODYNAMICS, ELEMENTARY PARTICLES, FIELD THEORIES, GRAND UNIFIED THEORY, INFORMATION, INTERACTIONS, LIE GROUPS, MASS, MATHEMATICAL MODELS, PARTICLE DECAY, PARTICLE MODELS, PARTICLE PROPERTIES, POSTULATED PARTICLES, QUANTUM FIELD THEORY, SU GROUPS, SYMMETRY GROUPS, U GROUPS, UNIFIED GAUGE MODELS, WEAK INTERACTIONS
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