Mostrando 441 - 460 Resultados de 1,370 Para Buscar '"Compact Muon Solenoid"', tiempo de consulta: 1.52s Limitar resultados
  1. 441
    por Dahms, Torsten
    Publicado 2012
    “…The Compact Muon Solenoid (CMS) has measured numerous quarkonium states via their decays into muon pairs in pp and PbPb collisions at sqrt(s_NN) = 2.76 TeV. …”
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    Enlace del recurso
  2. 442
    por Raknessa, G, Hausera, J, Wang, D
    Publicado 2007
    “…The synchronization of the trigger and data acquisition systems for the Cathode Strip Chambers (CSCs) in the Compact Muon Solenoid (CMS) detector at CERN is described. …”
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  3. 443
    por Kurt, Pelin
    Publicado 2008
    “…The CMS (Compact Muon Solenoid) detector will observe high transverse momentum jets produced in the final state of proton-proton collisions at the center of mass energy of 14 TeV. …”
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  4. 444
    por Kurt, Pelin
    Publicado 2008
    “…The CMS (Compact Muon Solenoid) detector will observe high transverse momentum jets produced in the final state of proton-proton collisions at the center of mass energy of 14 TeV. …”
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  5. 445
    por Maselli, Silvia
    Publicado 2009
    “…In this report, results on the calibration process of the Drift Tubes (DT) system of the Compact Muon Solenoid experiment are presented. The full commissioning of the calibration procedure has been deployed in year 2008 with the CMS Computing, Software and Analysis challenge (CSA08), which has tested the full work-flow needed for CMS data-taking during the LHC start-up operations. …”
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  6. 446
    por Weber, Matthias A
    Publicado 2009
    “…The study is based on a GEANT detector simulation of the Compact Muon Solenoid (CMS) detector. Calorimetric jet momenta, determined by the $k_{\text{T}}$ jet clustering algorithm, are used as input for calculating various event-shape variables, which probe the structure of the hadronic final state. …”
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  7. 447
    por Vickey Boeriu, Oana
    Publicado 2009
    “…The cathode strip chamber (CSC) system is one of the three types of muon detectors used in the Compact Muon Solenoid (CMS) experiment at the Large Hadron Collider (LHC). …”
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  8. 448
    por Bell, Alan James
    Publicado 2008
    “…The BSC detector is designed to aid in the commissioning of the Compact Muon Solenoid (CMS) during the first 2 years of operation and provide technical triggering for beam halo and minimum-bias events. …”
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  9. 449
    por CMS Collaboration
    Publicado 2008
    “…The CMS (Compact Muon Solenoid) detector will observe high transverse momentum jets produced in the final state of proton-proton collisions at the center of mass energy of 14 TeV. …”
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  10. 450
    “…The inner silicon detector of the Compact Muon Solenoid experiment (CMS) at CERN's LHC consists of 16\,588 modules. …”
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  11. 451
    por Kazana, Malgorzata
    Publicado 2009
    “…The discovery potential of four {\em Non-SUSY} searches of the ATLAS (A Toroidal LHC ApparatuS) and the CMS (Compact Muon Solenoid) experiments is presented in this paper. …”
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  12. 452
    por Leonard, Jessica Lynn
    Publicado 2011
    “…The cross section of pp -> Z -> e+e− was measured for sqrt(s) = 7 TeV pp collisions at the Large Hadron Collider using the Compact Muon Solenoid detector. Well-reconstructed electrons within the region |eta| < 1.4442, 1.566 < |eta| < 2.5 and with a transverse energy of at least 25 GeV were used, with an invariant mass window of 60 to 120 GeV. …”
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  13. 453
    por CMS Collaboration
    Publicado 2012
    “…We present a search for the production of a heavy \Wpr gauge boson using 5~fb$^{-1}$ of data collected during 2011 by the Compact Muon Solenoid experiment at $\sqrt{s}=7$~TeV. We study different models of \Wpr boson production using the decay channel \Wpr to a top quark and a bottom quark, including an arbitrary combination of left-~and right-handed couplings to fermions. …”
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  14. 454
    por Bechtel, Florian
    Publicado 2009
    “…The feasibility of measuring theunderlying event was investigated with the Compact Muon Solenoid(CMS) detector at the Large Hadron Collider (LHC) using chargedparticles and charged-particle jets.Systematic uncertainties of the underlying event measurement dueto detector misalignment and imperfect track reconstruction are foundto be negligible after Ldt = 1 pb−1 of data are available. …”
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  15. 455
    por Giffels, Manuel
    Publicado 2012
    “…The Data Bookkeeping Service (DBS) provides an event data catalog for Monte Carlo and recorded data of the Compact Muon Solenoid (CMS) Experiment at the Large Hadron Collider (LHC) at CERN, Geneva. …”
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    Enlace del recurso
  16. 456
    por Nguyen, Duong
    Publicado 2012
    “…We performed a search for large extra spatial dimensions via virtual graviton exchange in the diphoton channel with the Compact Muon Solenoid detector at the Large Hadron Collider. …”
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  17. 457
    por Stephans, George Stewart
    Publicado 2013
    “…The Compact Muon Solenoid (CMS) experiment at the Large Hadron Collider (LHC) has used a wide variety of observables to study the hot and dense medium created in heavy ion collisions. …”
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    Enlace del recurso
  18. 458
    “…Feasibility studies for the measurement of single-diffractive Z or W boson production in the electron and muon channels, J/ψ production in the muon decay channel and central exclusive dijet production, in proton-proton (pp) collisions with the Compact Muon Solenoid (CMS) and TOTal Elastic and diffractive cross section Measurement (TOTEM) experiments are presented. …”
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  19. 459
    por Dewanjee, Ram Krishna
    Publicado 2015
    “…With the recent discovery of the SM (Standard Model) higgs boson of mass around 125 GeV by the CMS (Compact Muon Solenoid) and the ATLAS (A Toroidal LHC Apparatus) collaborations at the LHC (Large Hadron Collider) at CERN, there have been attempts to interpret this newly discovered resonance in the context of BSM (Beyond Standard Model) physics scenarios. …”
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    Enlace del recurso
  20. 460
    por Saccomanno, Andrea
    Publicado 2015
    “…This thesis work is focused on the research, development and simulation of novel sensors and monitoring systems suitable to operete in these environmental conditions.In particular, the monitoring applications regards room temperature of Compact Muon Solenoid (CERN), cryogenic temperature (up to 4.2 K) of the powerful cooling system of the LHC's superconducting magnets, and magnetic field with magnetostrictive and magneto-optic approaches.…”
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