Measurement of $D^{* /-}$ Meson Production in Jets from Pp Collisions at Sqrt(S)
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Published: 2013
Total Pages: 21
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Published: 2013
Total Pages: 21
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Published: 2009
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DOWNLOAD EBOOKWe report the measurement of charged D* mesons in inclusive jets produced in proton-proton collisions at a center of mass energy (square root)s = 200 GeV with the STAR experiment at RHIC. For D* mesons with fractional momenta 0.2
Author: George Redlinger
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Published: 1989
Total Pages: 458
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Published: 2016
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DOWNLOAD EBOOKThe production of $D^{*\pm}$, $D^\pm$ and $D_s^\pm$ charmed mesons has been measured with the ATLAS detector in pp collisions at √s = 7 TeV at the LHC, using data corresponding to an integrated luminosity of 280 nb-1. The charmed mesons have been reconstructed in the range of transverse momentum 3.5
Author: Shreyasi Acharya
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Published: 2019
Total Pages: 0
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Published: 2017
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DOWNLOAD EBOOKThe first measurement of the jet mass m[jet] of top quark jets produced in t t-bar events from pp collisions at sqrt(s) = 8 TeV is reported for the jet with the largest transverse momentum pt in highly boosted hadronic top quark decays. The data sample, collected with the CMS detector, corresponds to an integrated luminosity of 19.7 inverse femtobarns. The measurement is performed in the lepton+jets channel in which the products of the semileptonic decay t to bW with W to l nu where l is an electron or muon, are used to select t t-bar events with large Lorentz boosts. The products of the fully hadronic decay t to bW with W to q q'-bar are reconstructed using a single Cambridge-Aachen jet with distance parameter R=1.2, and pt>400 GeV. The t t-bar cross section as a function of m[jet] is unfolded at the particle level and is used to test the modelling of highly boosted top quark production. The peak position of the m[jet] distribution is sensitive to the top quark mass m[t], and the data are used to extract a value of m[t] to assess this sensitivity.
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Published: 2013
Total Pages: 21
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DOWNLOAD EBOOKAuthor: Phillip Todd Koehn
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Published: 1996
Total Pages: 248
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Published: 2016
Total Pages: 62
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DOWNLOAD EBOOKAuthor: Bradley Hubbard
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Published: 1989
Total Pages: 246
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