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A Search for Chargino-neutralino Production at the Fermilab Tevatron Collider

A Search for Chargino-neutralino Production at the Fermilab Tevatron Collider
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Total Pages: 151
Release: 1997
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We have searched for evidence of supersymmetry with the Collider Detector at Fermilab using trilepton events in p{anti p} collisions at √s = 1.8 TeV. In the Minimal Supersymmetric Standard Model (MSSM), we expect trilepton events from chargino-neutralino ({tilde {xi}}{sup {+-}}1{tilde {xi}}°2) pair production, with subsequent decay into leptons. In all possible combinations of electron and muon channels, we observe no candidate events in 107 pb−1 of data. We present limits on chargino and neutralino production within the framework of a supergravity inspired MSSM: [sigma]{sub {tilde {xi}}{sup {+-}}1{tilde {xi}}°2} · BR({tilde {xi}}{sup {+-}}1{tilde {xi}}°2 → 3l + X) 0.34 pb and M{sub {tilde {xi}}{sup {+-}}1} 81.5 GeV/c2 for tan [beta] = 2, [mu] = -600 GeV/c2 and M{sub {tilde q}} = M{sub {tilde g}}. We also present limits on a SU(5) x U(1) supergravity model and a 4 and 1/2 parameter Minimal SUGRA model.


Search for Chargino-neutralino Production at the Collider Detector at Fermilab

Search for Chargino-neutralino Production at the Collider Detector at Fermilab
Author: John Strologas
Publisher:
Total Pages: 4
Release: 2006
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ISBN:

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The chargino-neutralino production is one of the most promising SUSY processes that could be observed at the Tevatron. Cross sections of the order of 0.1 pb have not been excluded yet under the mSUGRA scenario, whereas the trilepton signature of the process is not contaminated by significant standard model backgrounds. We report on the status of CDF search for chargino-neutralino production at the Tevatron by presenting the results of five multilepton subanalyses as well as the result of their combination which leads to our current lower limit on the chargino mass of 127 GeV/c{sup 2} and upper limit on the production cross section times branching ratio to leptons of 0.25 pb at 95% confidence level.


Search for Chargino-neutralino Pair Production with the D0 Detector at the Tevatron

Search for Chargino-neutralino Pair Production with the D0 Detector at the Tevatron
Author: Zhongmin Wang
Publisher:
Total Pages: 130
Release: 2004
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ISBN:

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We have searched for evidence for the chargino {bar {chi}}{sub 1}{sup {+-}} and neutralino ({bar {chi}}{sub 2}{sup 0}) pair production in proton anti-proton collisions at a center of mass energy of 1.96 TeV with the D0 detector at the Fermilab Tevatron Collider. Data corresponding to an integrated luminosity of 124.5 pb{sup -1} were examined for events containing like-sign electron pair and missing energy for the first time at D0. They observed no excess above the yield from Standard Model processes. In the framework of mSUGRA, they set a series of upper limits, at the 95% confidence level, of the chargino neutralino production cross section times the branching fraction to tri-electrons as a function of the chargino mass. These limits range from 0.79 pb for m{sub {bar {chi}}{sub 1}{sup {+-}}} = 86.9 GeV/c{sup 2} to 0.52 pb for m{sub {bar {chi}}{sub 1}{sup {+-}}} = 115.1 GeV/c{sup 2}.


A Search for Supersymmetry Via Chargino-Neutralino Production in Low-$p_T$ Dimuon with the Collider Detector at Fermilab

A Search for Supersymmetry Via Chargino-Neutralino Production in Low-$p_T$ Dimuon with the Collider Detector at Fermilab
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Total Pages: 265
Release: 2007
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We have searched for evidence of supersymmetry with 1 $fb^-1$ with collected with low-$p_T$ dimuon triggers of the Collider Detector on Tevatron Run II, at Fermilab. We looked for trilepton events in $p\bar{p}$ collisions at $\sqrt{s} = 1.96$ TeV. In the Minimal Supersymmetric Standard Model (MSSM) we expect chargino-neutralino pair production, with subsequent decay into three isolated leptons. We observe one event of three isolated muons, a possible hint of supersymmetry.


Search for Associated Chargino-Neutralino Production in Proton-Antiproton Collisions at 1.96 TeV.

Search for Associated Chargino-Neutralino Production in Proton-Antiproton Collisions at 1.96 TeV.
Author: Ulla Blumenschein
Publisher:
Total Pages: 232
Release: 2005
Genre:
ISBN:

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The search for a fundamental theory of matter and forces in the universe has ever since attracted the interest of physicists. The large success of the gauge theories in the description of low-energy phenomena nourishes the hope that gauge symmetries are the clue to a unified description of all fundamental processes at high energy scales. Particle collision experiments of the past decades have probed the structure of matter with increasing resolution. The phenomena observed in collision experiments at current energy scales are described with a large precision by the Standard Model of particle physics. Nevertheless, many open questions in the Standard Model suggest that it is an effective low-energy theory of a more fundamental theory: the numbers of free parameters of the model, the numbers of generations, the hierarchy between the electroweak scale and the Planck scale, the pending integration of gravity and the evolution of the strengths of the fundamental forces at large energy regimes. In addition, recent cosmological data suggest that the density of ordinary matter which is described by the Standard Model, corresponds only to a small fraction of the matter density in the universe. Many of the above mentioned problems are addressed by an extension of the Standard Model that is based on an additional internal symmetry, the Supersymmetry (SUSY) of fermions and bosons. It predicts the existence of a partner for each known fundamental particle with the same quantum numbers but different spin. Supersymmetry must be broken at the energy regime of present collider experiments which leads to different masses of Standard Model particles and their super-partners. Low-mass supersymmetric partners are expected to be produced at a sufficient rate at present or future collider experiments. In the analysis performed in this thesis, it is assumed that SUSY particles decay into their Standard Model partners and the stable lightest supersymmetric particle, which is only weakly interacting, carrying away energy and momentum and leading to detector signatures with large missing energy. Supersymmetric particles have been searched for at the electron-positron collider LEP up to the kinematic limit. No evidence for these particles has been observed which results in lower limits on their masses. Additional constraints stem from precision measurements of quantities, which are sensitive to corrections from SUSY particles and from the search for dark matter in cosmological experiments. The search for SUSY particles beyond the reach of LEP is continued at larger energy regimes at present and future hadron colliders. In its second phase of data taking (Run II), the center-of-mass energy of the proton-antiproton collider Tevatron at Fermilab has been raised and the luminosity has been increased considerably. The D0 experiment, one of the two Tevatron experiments, has been upgraded accordingly. The Tevatron collider allows to probe a substantial SUSY mass range beyond the LEP limits. The search will be continued at the Large Hadron Collider (LHC) which is presently being constructed at the European Research laboratory for particle physics CERN in Geneva. At hadron colliders the supersymmetric partners of quarks and gluons are copiously produced in strong interactions, provided they are light enough. Within most of the established SUSY models, these particles are too heavy to be produced at a sufficient rate at the Tevatron collider and the production of the lighter super-partners of the Higgs and gauge bosons, the charginos and neutralinos, becomes an important source of SUSY particles. Decays of these particles result in final states with leptons or hadrons and large missing energy. Leptonic final states can be separated more easily from the large background of hadronic Standard Model processes. A search for the associated production of the lightest chargino and the second lightest neutralino has been performed in final states with two electrons, an additional lepton and large missing transverse energy using data collected with the D0 detector from April 2002 to July 2004. The results are interpreted stand-alone and in combination with other leptonic channels in the framework of constraint supersymmetric models.


Search for Chargino-neutralino Associated Production Via Trileptonic Final States with DO Detector

Search for Chargino-neutralino Associated Production Via Trileptonic Final States with DO Detector
Author:
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Total Pages: 9
Release: 1996
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ISBN:

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Preliminary results from a search for the production of an associated lightest chargino, W1, and second lightest neutralino, Z2, pair with the D0 detector at Fermilab's pp collider with (square root)s = 1.8 TeV are presented. Based on approximately 85 pb−1 of data collected during the 1993-1995 Tevatron Runs we set a 95% C.L. upper limit on the chargino-neutralino cross section times branching fraction to any trileptonic final state ranging from 0.91 pb to 0.19 pb for wino masses ranging from 45 GeV/c2 to 96 GeV/c2.


Search for Super Symmetry at the Tevatron Using the Trilepton Signature

Search for Super Symmetry at the Tevatron Using the Trilepton Signature
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Total Pages: 153
Release: 2008
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This dissertation describes a search for the associated production of the supersymmetric particles, the chargino and the neutralino, through their R-parity conserving decays to three leptons and missing energy. This search is carried out using the data collected at the CDF experiment at the Tevatron (square root)s = 1.96 TeV p{bar p} collider at Fermilab. The results are obtained by combining five independent channels with varying signal to background ratio. Overall, a total of 6.4 ± 1.1 background events from standard model processes and 11.4 ± 1.1 signal events for a particular choice of mSUGRA model parameters are expected. The observation of 7 events in data is consistent with the standard model background expectation, and the mSUGRA model is constrained. Limits are set on the cross section of Chargino-Neutralino pair production, and a limit on the mass of the chargino is extracted. A method of obtaining model-independent results is also discussed.