Hard Diffractive Production of Heavy Flavors in High Energy p+p(p) Collisions

  • The p+p(p)→p+J/ψ(Υ)+X processes for energies ranging from ISR to SSC are discussed. Assuming that Pomeron(P)have parton distributions and dominated by gluons with behavior as when x.is small,we calculate carefully the cross sections for the above hard diffractive processes and of"background"DrellYan Processes by tab lug two main sub-diagrams in the lowest order of QCD.In contrast to InS increasing with S for the background cross sections,the hard diffractive ones increase as(InS)2,hance the latter would be greatly beyond the former at TeV energies.We shown that this property is universal for other hard diffractive processes.So,if our assumptions about P are right,they would provide a new method for detecting physical particles at superhigh energies.
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Peng Hongan, Qin Kecheng and He Zhenmin. Hard Diffractive Production of Heavy Flavors in High Energy p+p(p) Collisions[J]. Chinese Physics C, 1994, 18(12): 1078-1085.
Peng Hongan, Qin Kecheng and He Zhenmin. Hard Diffractive Production of Heavy Flavors in High Energy p+p(p) Collisions[J]. Chinese Physics C, 1994, 18(12): 1078-1085. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Hard Diffractive Production of Heavy Flavors in High Energy p+p(p) Collisions

    Corresponding author: Peng Hongan,
  • Department of Physict, Peking University,Beijing 1008711 Department of Physics, Hebel Teachers'University,Shijicazhuang 050016

Abstract: The p+p(p)→p+J/ψ(Υ)+X processes for energies ranging from ISR to SSC are discussed. Assuming that Pomeron(P)have parton distributions and dominated by gluons with behavior as when x.is small,we calculate carefully the cross sections for the above hard diffractive processes and of"background"DrellYan Processes by tab lug two main sub-diagrams in the lowest order of QCD.In contrast to InS increasing with S for the background cross sections,the hard diffractive ones increase as(InS)2,hance the latter would be greatly beyond the former at TeV energies.We shown that this property is universal for other hard diffractive processes.So,if our assumptions about P are right,they would provide a new method for detecting physical particles at superhigh energies.

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