74 resultados para ATLAS, particle physics, SM, ZZ, aTGC

em Universidade do Minho


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A search for the associated production of the Higgs boson with a top quark pair is performed in multilepton final states using 20.3 fbâˆ1 of proton-proton collision data recorded by the ATLAS experiment at s√=8 TeV at the Large Hadron Collider. Five final states, targeting the decays HâWWâˆ, ÏÏ, and ZZâˆ, are examined for the presence of the Standard Model (SM) Higgs boson: two same-charge light leptons (e or μ) without a hadronically decaying Ï lepton; three light leptons; two same-charge light leptons with a hadronically decaying Ï lepton; four light leptons; and one light lepton and two hadronically decaying Ï leptons. No significant excess of events is observed above the background expectation. The best fit for the tt¯H production cross section, assuming a Higgs boson mass of 125 GeV, is 2.1+1.4âˆ1.2 times the SM expectation, and the observed (expected) upper limit at the 95% confidence level is 4.7 (2.4) times the SM rate. The p-value for compatibility with the background-only hypothesis is 1.8σ; the expectation in the presence of a Standard Model signal is 0.9σ.

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Measurements of the centrality and rapidity dependence of inclusive jet production in sNNâˆâˆâˆâˆš=5.02 TeV proton--lead (p+Pb) collisions and the jet cross-section in s√=2.76 TeV proton--proton collisions are presented. These quantities are measured in datasets corresponding to an integrated luminosity of 27.8 nbâˆ1 and 4.0 pbâˆ1, respectively, recorded with the ATLAS detector at the Large Hadron Collider in 2013. The p+Pb collision centrality was characterised using the total transverse energy measured in the pseudorapidity interval âˆ4.9<η<âˆ3.2 in the direction of the lead beam. Results are presented for the double-differential per-collision yields as a function of jet rapidity and transverse momentum (pT) for minimum-bias and centrality-selected p+Pb collisions, and are compared to the jet rate from the geometric expectation. The total jet yield in minimum-bias events is slightly enhanced above the expectation in a pT-dependent manner but is consistent with the expectation within uncertainties. The ratios of jet spectra from different centrality selections show a strong modification of jet production at all pT at forward rapidities and for large pT at mid-rapidity, which manifests as a suppression of the jet yield in central events and an enhancement in peripheral events. These effects imply that the factorisation between hard and soft processes is violated at an unexpected level in proton--nucleus collisions. Furthermore, the modifications at forward rapidities are found to be a function of the total jet energy only, implying that the violations may have a simple dependence on the hard parton--parton kinematics.

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A search for a heavy, CP-odd Higgs boson, A, decaying into a Z boson and a 125 GeV Higgs boson, h, with the ATLAS detector at the LHC is presented. The search uses protonâproton collision data at a centre-of-mass energy of 8 TeV corresponding to an integrated luminosity of 20.3 fbâˆ1. Decays of CP-even h bosons to ÏÏ or bb pairs with the Z boson decaying to electron or muon pairs are considered, as well as hâbbhâbb decays with the Z boson decaying to neutrinos. No evidence for the production of an A boson in these channels is found and the 95% confidence level upper limits derived for View the MathML sourceσ(ggâA)ÃBR(AâZh)ÃBR(hâff¯) are 0.098â0.013 pb for f=Ïf=Ï and 0.57â0.014 pb for f=bf=b in a range of mA=220â1000 GeVmA=220â1000 GeV. The results are combined and interpreted in the context of two-Higgs-doublet models.

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A search is performed for Higgs bosons produced in association with top quarks using the diphoton decay mode of the Higgs boson. Selection requirements are optimized separately for leptonic and fully hadronic final states from the top quark decays. The dataset used corresponds to an integrated luminosity of 4.5 fbâˆ1 of proton--proton collisions at a center-of-mass energy of 7 TeV and 20.3 fbâˆ1 at 8 TeV recorded by the ATLAS detector at the CERN Large Hadron Collider. No significant excess over the background prediction is observed and upper limits are set on the tt¯H production cross section. The observed exclusion upper limit at 95% confidence level is 6.7 times the predicted Standard Model cross section value. In addition, limits are set on the strength of the Yukawa coupling between the top quark and the Higgs boson, taking into account the dependence of the tt¯H and tH cross sections as well as the Hâγγ branching fraction on the Yukawa coupling. Lower and upper limits at 95% confidence level are set at âˆ1.3 and +8.0 times the Yukawa coupling strength in the Standard Model.

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This Letter presents a search at the LHC for s-channel single top-quark production in proton-proton collisions at a centre-of-mass energy of 8 TeV. The analyzed data set was recorded by the ATLAS detector and corresponds to an integrated luminosity of 20.3 fbâˆ1. Selected events contain one charged lepton, large missing transverse momentum and exactly two b-tagged jets. A multivariate event classifier based on boosted decision trees is developed to discriminate s-channel single top-quark events from the main background contributions. The signal extraction is based on a binned maximum-likelihood fit of the output classifier distribution. The analysis leads to an upper limit on the s-channel single top-quark production cross-section of 14.6 pb at the 95% confidence level. The fit gives a cross-section of σs=5.0±4.3 pb, consistent with the Standard Model expectation.

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A search for new charged massive gauge bosons, called Wâ², is performed with the ATLAS detector at the LHC, in proton--proton collisions at a centre-of-mass energy of s√ = 8 TeV, using a dataset corresponding to an integrated luminosity of 20.3 fbâˆ1. This analysis searches for Wâ² bosons in the Wâ²âtb¯ decay channel in final states with electrons or muons, using a multivariate method based on boosted decision trees. The search covers masses between 0.5 and 3.0 TeV, for right-handed or left-handed Wâ² bosons. No significant deviation from the Standard Model expectation is observed and limits are set on the Wâ²âtb¯ cross-section times branching ratio and on the Wâ²-boson effective couplings as a function of the Wâ²-boson mass using the CLs procedure. For a left-handed (right-handed) Wâ² boson, masses below 1.70 (1.92) TeV are excluded at 95% confidence level.

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This Letter reports a measurement of the exclusive γγââ+ââˆ(â=e,μ) cross-section in proton--proton collisions at a centre-of-mass energy of 7 TeV by the ATLAS experiment at the LHC, based on an integrated luminosity of 4.6 fbâˆ1. For the electron or muon pairs satisfying exclusive selection criteria, a fit to the dilepton acoplanarity distribution is used to extract the fiducial cross-sections. The cross-section in the electron channel is determined to be σexcl.γγâe+eâˆ=0.428±0.035(stat.)±0.018(syst.) pb for a phase-space region with invariant mass of the electron pairs greater than 24 GeV, in which both electrons have transverse momentum pT>12 GeV and pseudorapidity |η|<2.4. For muon pairs with invariant mass greater than 20 GeV, muon transverse momentum pT>10 GeV and pseudorapidity |η|<2.4, the cross-section is determined to be σexcl.γγâμ+μâˆ=0.628±0.032(stat.)±0.021(syst.) pb. When proton absorptive effects due to the finite size of the proton are taken into account in the theory calculation, the measured cross-sections are found to be consistent with the theory prediction.

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This Letter presents measurements of correlated production of nearby jets in Pb+Pb collisions at sNNâˆâˆâˆâˆš=2.76 TeV using the ATLAS detector at the Large Hadron Collider. The measurement was performed using 0.14 nbâˆ1 of data recorded in 2011. The production of correlated jet pairs was quantified using the rate, RÎR, of ``neighbouring'' jets that accompany ``test'' jets within a given range of angular distance, ÎR, in the pseudorapidity--azimuthal angle plane. The jets were measured in the ATLAS calorimeter and were reconstructed using the anti-kt algorithm with radius parameters d=0.2, 0.3, and 0.4. RÎR was measured in different Pb+Pb collision centrality bins, characterized by the total transverse energy measured in the forward calorimeters. A centrality dependence of RÎR is observed for all three jet radii with RÎR found to be lower in central collisions than in peripheral collisions. The ratios formed by the RÎR values in different centrality bins and the values in the 40--80 % centrality bin are presented.

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An observation of the Î0bâψ(2S)Î0 decay and a comparison of its branching fraction with that of the Î0bâJ/ψÎ0 decay has been made with the ATLAS detector in proton--proton collisions at s√=8TeV at the LHC using an integrated luminosity of 20.6fbâˆ1. The J/ψ and ψ(2S) mesons are reconstructed in their decays to a muon pair, while the Î0âpÏ∠decay is exploited for the Î0 baryon reconstruction. The Î0b baryons are reconstructed with transverse momentum pT>10GeV and pseudorapidity |η|<2.1. The measured branching ratio of the Î0bâψ(2S)Î0 and Î0bâJ/ψÎ0 decays is Î(Î0bâψ(2S)Î0)/Î(Î0bâJ/ψÎ0)=0.501±0.033(stat)±0.019(syst), lower than the expectation from the covariant quark model.

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Charged-particle spectra obtained in 0.15nbâˆ1 of Pb+Pb interactions at sNNâˆâˆâˆâˆš=2.76TeV and 4.2pbâˆ1 of pp interactions at s√=2.76TeV with the ATLAS detector at the LHC are presented in a wide transverse momentum (0.5<pT<150GeV) and pseudorapidity (|η|<2) range. For Pb+Pb collisions, the spectra are presented as a function of collision centrality, which is determined by the response of the forward calorimeter located on both sides of the interaction point. The nuclear modification factors RAA and RCP are presented in detail as function of centrality, pT and η. They show a distinct pT-dependence with a pronounced minimum at about 7GeV. Above 60GeV, RAA is consistent with a plateau at a centrality-dependent value, within the uncertainties. The value is 0.55±0.01(stat.)±0.04(syst.) in the most central collisions. The RAA distribution is consistent with flat |η| dependence over the whole transverse momentum range in all centrality classes.

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A measurement of spin correlation in tt¯ production is presented using data collected with the ATLAS detector at the Large Hadron Collider in proton-proton collisions at a center-of-mass energy of 8 TeV, corresponding to an integrated luminosity of 20.3 fbâˆ1. The correlation between the top and antitop quark spins is extracted from dilepton tt¯ events by using the difference in azimuthal angle between the two charged leptons in the laboratory frame. In the helicity basis the measured degree of correlation corresponds to Ahelicity=0.38±0.04, in agreement with the Standard Model prediction. A search is performed for pair production of top squarks with masses close to the top quark mass decaying to predominantly right-handed top quarks and a light neutralino, the lightest supersymmetric particle. Top squarks with masses between the top quark mass and 191 GeV are excluded at the 95% confidence level.

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The final ATLAS Run 1 measurements of Higgs boson production and couplings in the decay channel HâZZâˆââ+ââˆââ²+ââ²âˆ, where â,ââ²=e or μ, are presented. These measurements were performed using pp collision data corresponding to integrated luminosities of 4.5 fbâˆ1 and 20.3 fbâˆ1 at center-of-mass energies of 7 TeV and 8 TeV, respectively, recorded with the ATLAS detector at the LHC. The HâZZâˆâ4â signal is observed with a significance of 8.1 standard deviations at 125.36 GeV, the combined ATLAS measurement of the Higgs boson mass from the Hâγγ and HâZZâˆâ4â channels. The production rate relative to the Standard Model expectation, the signal strength, is measured in four different production categories in the HâZZâˆâ4â channel. The measured signal strength, at this mass, and with all categories combined, is 1.44 +0.40âˆ0.33. The signal strength for Higgs boson production in gluon fusion or in association with tt¯ or bb¯ pairs is found to be 1.7 +0.5âˆ0.4, while the signal strength for vector-boson fusion combined with WH/ZH associated production is found to be 0.3 +1.6âˆ0.9.

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This Letter presents a search for a hidden-beauty counterpart of the X(3872) in the mass ranges 10.05--10.31 GeV and 10.40--11.00 GeV, in the channel XbâÏ+ÏâˆÎ¥(1S)(âμ+μâˆ), using 16.2 fbâˆ1 of s√=8 TeV pp collision data collected by the ATLAS detector at the LHC. No evidence for new narrow states is found, and upper limits are set on the product of the Xb cross section and branching fraction, relative to those of the Î¥(2S), at the 95% confidence level using the CLS approach. These limits range from 0.8% to 4.0%, depending on mass. For masses above 10.1 GeV, the expected upper limits from this analysis are the most restrictive to date. Searches for production of the Î¥(13DJ), Î¥(10860), and Î¥(11020) states also reveal no significant signals.

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This paper presents measurements from the ATLAS experiment of the forward-backward asymmetry in the reaction ppâZ/γâˆâl+lâˆ, with l being electrons or muons, and the extraction of the effective weak mixing angle. The results are based on the full set of data collected in 2011 in pp collisions at the LHC at s√ = 7 TeV, corresponding to an integrated luminosity of 4.8 fbâˆ1. The measured asymmetry values are found to be in agreement with the corresponding Standard Model predictions. The combination of the muon and electron channels yields a value of the effective weak mixing angle of 0.2308±0.0005(stat.)±0.0006(syst.)±0.0009(PDF), where the first uncertainty corresponds to data statistics, the second to systematic effects and the third to knowledge of the parton density functions. This result agrees with the current world average from the Particle Data Group fit.

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A search for heavy leptons decaying to a Z boson and an electron or a muon is presented. The search is based on pp collision data taken at s√=8 TeV by the ATLAS experiment at the CERN Large Hadron Collider, corresponding to an integrated luminosity of 20.3 fbâˆ1. Three high-transverse-momentum electrons or muons are selected, with two of them required to be consistent with originating from a Z boson decay. No significant excess above Standard Model background predictions is observed, and 95% confidence level limits on the production cross section of high-mass trilepton resonances are derived. The results are interpreted in the context of vector-like lepton and type-III seesaw models. For the vector-like lepton model, most heavy lepton mass values in the range 114-176 GeV are excluded. For the type-III seesaw model, most mass values in the range 100-468 GeV are excluded.