332 research outputs found

    Search for Particles and Forces Beyond the Standard Model at HERA ep and Tevatron p\bar{p} Colliders

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    A review of searches for physics beyond the Standard Model carried out at high energy lepton-hadron and hadron-hadron facilities is presented, with emphasis on topics of interest for future data taking at the upgraded Tevatron ppˉp{\bar p} and HERA epep colliders. The status and discovery prospects are discussed for leptoquarks, Technicolour and supersymmetry, forbidden lepton and quark flavour-changing processes, extra gauge bosons, excited states of composite fermions, generic contact interactions and extra compactified dimensions.Comment: 64 pages, 34 figures, submitted for publication in "Progress in Particle and Nuclear Physics

    A Study of Lepton Flavor Violating ÎŒN(eN)→τX\mu N (e N) \to \tau X Reactions in Supersymmetric Models

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    We study a lepton flavor violating ÎŒN→τX\mu N \to \tau X reaction in deep inelastic scattering region in supersymmetric models. The contribution from the Higgs boson mediation could be important for this reaction. For that case, the cross section is constrained by the experimental limit of the pseudo-scalar coupling from τ→Όη\tau \to \mu\eta decays. We find that at a muon energy (EÎŒE_{\mu}) higher than 50 GeV, the predicted cross section increases significantly due to the contribution from sea bb-quarks. As a result, with 102010^{20} muons per year, at most a number of O(104)\mathcal{O}(10^4) is expected for ÎŒN→τX\mu N \to \tau X events at EÎŒE_{\mu}= 300 GeV, whereas O(102)\mathcal{O}(10^2) events are given at EÎŒ=50E_{\mu}= 50 GeV. Furthermore, the ÎŒN→τX\mu N \to \tau X phenomenology, in particular that for the signal and backgrounds, is briefly discussed. Another promising possibility to search for the eN→τXe N \to \tau X reaction at an electron-positron linear collider is also discussed. Searches for these reactions would be competitive to studies of rare tau decays and have potential to improve sensitivities to lepton flavor violation significantly.Comment: 6 pages, 3 figures, revtex

    Search for dark matter produced in association with bottom or top quarks in √s = 13 TeV pp collisions with the ATLAS detector

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    A search for weakly interacting massive particle dark matter produced in association with bottom or top quarks is presented. Final states containing third-generation quarks and miss- ing transverse momentum are considered. The analysis uses 36.1 fb−1 of proton–proton collision data recorded by the ATLAS experiment at √s = 13 TeV in 2015 and 2016. No significant excess of events above the estimated backgrounds is observed. The results are in- terpreted in the framework of simplified models of spin-0 dark-matter mediators. For colour- neutral spin-0 mediators produced in association with top quarks and decaying into a pair of dark-matter particles, mediator masses below 50 GeV are excluded assuming a dark-matter candidate mass of 1 GeV and unitary couplings. For scalar and pseudoscalar mediators produced in association with bottom quarks, the search sets limits on the production cross- section of 300 times the predicted rate for mediators with masses between 10 and 50 GeV and assuming a dark-matter mass of 1 GeV and unitary coupling. Constraints on colour- charged scalar simplified models are also presented. Assuming a dark-matter particle mass of 35 GeV, mediator particles with mass below 1.1 TeV are excluded for couplings yielding a dark-matter relic density consistent with measurements

    Search for effective Lorentz and CPT violation using ZEUS data

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    Lorentz and CPT symmetry in the quark sector of the Standard Model are studied in the context of an effective field theory using ZEUS e±p data. Symmetry-violating effects can lead to time-dependent oscillations of otherwise time-independent observables, including scattering cross sections. An analysis using five years of inclusive neutral-current deep inelastic scattering events corresponding to an integrated HERA luminosity of 372 pb-1 at s=318 GeV has been performed. No evidence for oscillations in sidereal time has been observed within statistical and systematic uncertainties. Constraints, most for the first time, are placed on 42 coefficients parametrizing dominant CPT-even dimension-four and CPT-odd dimension-five spin-independent modifications to the propagation and interaction of light quarks
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