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Heinemeyer, S.; Khoze, V.A.; Tasevsky, M.; Weiglein, G.
Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)2010
Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)2010
AbstractAbstract
[en] We investigate the prospects for Central Exclusive Diffractive (CED) production of BSM Higgs bosons at the LHC using forward proton detectors installed at 220 m and 420 m distance around ATLAS and/or CMS. We update a previous analysis for the MSSM taking into account improvements in the theoretical calculations and the most recent exclusion bounds from the Tevatron. We extend the MSSM analysis to new benchmark scenarios that are in agreement with the cold dark matter relic abundance and other precision measurements. We analyse the exclusive production of Higgs bosons in a model with a fourth generation of fermions. Finally, we comment on the determination of Higgs spin-parity and coupling structures at the LHC and show that the forward proton mode could provide crucial information on the CP properties of the Higgs bosons. (orig.)
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Dec 2010; 37 p; DCPT--10-162; IPPP--10-81; ISSN 0418-9833; 

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ANGULAR DISTRIBUTION, ASYMMETRY, B ANTIQUARKS, CP INVARIANCE, DIFFERENTIAL CROSS SECTIONS, DIFFRACTION MODELS, EXCLUSIVE INTERACTIONS, HIGGS BOSONS, PAIR PRODUCTION, PARITY, PARTICLE WIDTHS, PROTON-PROTON INTERACTIONS, PROTONS, REST MASS, SPIN, STANDARD MODEL, SUPERSYMMETRY, TEV RANGE 10-100, WEAK HADRONIC DECAY
ANGULAR MOMENTUM, ANTIMATTER, ANTIPARTICLES, ANTIQUARKS, B QUARKS, BARYON-BARYON INTERACTIONS, BARYONS, BEAUTY PARTICLES, BOSONS, CROSS SECTIONS, DECAY, DISTRIBUTION, ELEMENTARY PARTICLES, ENERGY RANGE, FERMIONS, FIELD THEORIES, GRAND UNIFIED THEORY, HADRON-HADRON INTERACTIONS, HADRONS, INTERACTIONS, INVARIANCE PRINCIPLES, MASS, MATHEMATICAL MODELS, MATTER, NUCLEON-NUCLEON INTERACTIONS, NUCLEONS, PARTICLE DECAY, PARTICLE INTERACTIONS, PARTICLE MODELS, PARTICLE PRODUCTION, PARTICLE PROPERTIES, POSTULATED PARTICLES, PROTON-NUCLEON INTERACTIONS, QUANTUM FIELD THEORY, QUARKS, SYMMETRY, TEV RANGE, UNIFIED GAUGE MODELS, WEAK PARTICLE DECAY
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