4 research outputs found

    Global Search for New Physics with 2.0/fb at CDF

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    Data collected in Run II of the Fermilab Tevatron are searched for indications of new electroweak-scale physics. Rather than focusing on particular new physics scenarios, CDF data are analyzed for discrepancies with the standard model prediction. A model-independent approach (Vista) considers gross features of the data, and is sensitive to new large cross-section physics. Further sensitivity to new physics is provided by two additional algorithms: a Bump Hunter searches invariant mass distributions for "bumps" that could indicate resonant production of new particles; and the Sleuth procedure scans for data excesses at large summed transverse momentum. This combined global search for new physics in 2.0/fb of ppbar collisions at sqrt(s)=1.96 TeV reveals no indication of physics beyond the standard model.Comment: 8 pages, 7 figures. Final version which appeared in Physical Review D Rapid Communication

    Search for High-Mass \boldmathe+ee^+e^- Resonances in \boldmathppˉp\bar{p} Collisions at \boldmaths=\sqrt{s}=1.96 TeV

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    submitted to Phys. Rev. LettA search for high-mass resonances in the e+ee^+e^- final state is presented based on s=\sqrt{s}=1.96 TeV ppˉp\bar{p} collision data from the CDF II detector at the Fermilab Tevatron from an integrated luminosity of 2.5 fb1^{-1}. The largest excess over the standard model prediction is at an e+ee^+e^- invariant mass of 240 GeV/c2c^2. The probability of observing such an excess arising from fluctuations in the standard model anywhere in the mass range of 150--1,000 GeV/c2c^2 is 0.6% (equivalent to 2.5 σ\sigma). We set Bayesian upper limits on σ(ppˉX)B(Xe+e)\sigma(p\bar{p}\to X)\cdot\mathcal{B}(X\to e^+e^-) at the 95% credibility level, where XX is a spin 1 or spin 2 particle, and we exclude the standard model coupling ZZ' and the Randall-Sundrum graviton for k/MPl=0.1k/\overline{M}_{Pl}=0.1 with masses below 963 and 848 GeV/c2c^2, respectively

    Measurement of Resonance Parameters of Orbitally Excited Narrow B^0 Mesons

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    7 pages, 1 figure, 1 table. Submitted to Phys.Rev.LettWe report a measurement of resonance parameters of the orbitally excited (L=1) narrow B^0 mesons in decays to B^{(*)+}\pi^- using 1.7/fb of data collected by the CDF II detector at the Fermilab Tevatron. The mass and width of the B^{*0}_2 state are measured to be m(B^{*0}_2) = 5740.2^{+1.7}_{-1.8}(stat.) ^{+0.9}_{-0.8}(syst.) MeV/c^2 and \Gamma(B^{*0}_2) = 22.7^{+3.8}_{-3.2}(stat.) ^{+3.2}_{-10.2}(syst.) MeV/c^2. The mass difference between the B^{*0}_2 and B^0_1 states is measured to be 14.9^{+2.2}_{-2.5}(stat.) ^{+1.2}_{-1.4}(syst.) MeV/c^2, resulting in a B^0_1 mass of 5725.3^{+1.6}_{-2.2}(stat.) ^{+1.4}_{-1.5}(syst.) MeV/c^2. This is currently the most precise measurement of the masses of these states and the first measurement of the B^{*0}_2 width

    Inclusive Search for Squark and Gluino Production in ppbar Collisions at sqrt{s} = 1.96 TeV

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    Paper submitted to Phys. Rev. LettersWe report on a search for inclusive production of squarks and gluinos in ppbar collisions at sqrt{s}=1.96 TeV, in events with large missing transverse energy and multiple jets of hadrons in the final state. The study uses a CDF Run II data sample corresponding to 2 fb-1 of integrated luminosity. The data are in good agreement with the standard model predictions, giving no evidence for any squark or gluino component. In an R-parity conserving minimal supergravity scenario with A_0 = 0, mu < 0 and tanbeta = 5, 95% C.L. upper limits on the production cross sections in the range between 0.1 pb and 1 pb are obtained, depending on the squark and gluino masses considered. For gluino masses below 280 GeV/c2, arbitrarily large squark masses are excluded at the 95%C.L., while for mass degenerate gluinos and squarks, masses below 392 GeV/c2 are excluded at the 95% C.L
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