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|a Balewski, Jan T.
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|a Bates Linear Accelerator Center
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|a Massachusetts Institute of Technology. Department of Physics
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|a Massachusetts Institute of Technology. Laboratory for Nuclear Science
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|a Surrow, Bernd
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|a Balewski, Jan T.
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|a Betancourt, Michael Joseph
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|a Corliss, Ross Cameron
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|a Leight, William Axel
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|a Milner, Richard G.
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|a Redwine, Robert P.
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|a Seele, Joseph Patrick
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|a Steadman, Stephen G.
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|a Surrow, Bernd
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|a van Nieuwenhuizen, Gerrit Jan
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|a Walker, Matthew H.
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|a Betancourt, Michael Joseph
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|a Corliss, Ross Cameron
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|a Hays-Wehle, James Prewitt
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|a Leight, William Axel
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|a Milner, Richard G.
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|a Redwine, Robert P.
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|a Seele, Joseph Patrick
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|a Steadman, Stephen G.
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|a Surrow, Bernd
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|a van Nieuwenhuizen, Gerrit Jan
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|a Walker, Matthew H.
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|a High pT [p subscript T] nonphotonic electron production in p+p collisions at √s=200 [square root of s=200] GeV
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|b American Physical Society,
|c 2011-10-12T19:18:54Z.
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|z Get fulltext
|u http://hdl.handle.net/1721.1/66226
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|a We present the measurement of nonphotonic electron production at high transverse momentum (pT>2.5 GeV/c) [(p subscript T > 2.5 GeV/c)] in p+p collisions at √s=200 [square root of s=200] GeV using data recorded during 2005 and 2008 by the STAR experiment at the Relativistic Heavy Ion Collider (RHIC). The measured cross sections from the two runs are consistent with each other despite a large difference in photonic background levels due to different detector configurations. We compare the measured nonphotonic electron cross sections with previously published RHIC data and perturbative quantum chromodynamics calculations. Using the relative contributions of B and D mesons to nonphotonic electrons, we determine the integrated cross sections of electrons (e++e-/2) [e superscript + plus e superscript - /2)] at 3 GeV/c<pT<10 GeV/c [3 GeV/c < p subscript T <10 GeV/c] from bottom and charm meson decays to be [(dσ(B→e)+(B→D→e))/(dye)]ye=0=4.0±0.5(stat)±1.1(syst) [[(d delta subscript (B→e) + (B→D→e) / (dY subscript e)] subscript ye=0 = 4.0±0.5(stat)±1.1(syst)] nb and [(dσD→e)/(dye)]ye=0=6.2±0.7(stat)±1.5(syst) [[(d delta subscript D→e) / (dY subscript e)] subscript ye=0 = 6.2±0.7(stat)±1.5(syst)] nb, respectively.
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|a United States. Dept. of Energy. Office of Nuclear Physics
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|a United States. Dept. of Energy. Office of High Energy Physics
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|a National Science Foundation (U.S.).
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|a Alfred P. Sloan Foundation
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|a en_US
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|a Article
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|t Physical review D
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