Description of Charged Particle Multiplicity Distribution in High Energy Strong Interaction

  • With the assumption that the probability for n-charged particles production inhadron-hadron collision is Pn=xPn(1)+(1— x)Pn(2), whithin Pn(1)= andand proper choice of 1, 2, k and x, the true multiplicity distribution in full phase space can be described successfully at the centre fo mass energy GeV. Using the experimental data of non singe-diffractive collisions between proton and antiproton at centre of mass energies of 200 and 900GeV, the supposition had beenexamined and confirmed: it is very good to describe the facts. Had been discussed the theoretical bases of supposition.
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  • [1] V.Gupta and N.Sarma,Z.Phys.,C52(1991)53.[2]J.Benencke,T.T.Chou,C.N.Yang and E.Yen,Phys.Rev,188(1969)2159.[3]T.K.Gaisser et al,Phys.Lett,166B(1986)219.[4]UA5 Collaboration,G.J.Alner et al,Phys.Lett,138B(1984)304.[5]UA5 Collaboration,G.J.Alner et al,Phys.Lett,160B(1985)199.[6]UA5 Cllaboration,K.E.Ansorge et al.,CERN-EP/88-172(1988).
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Qin Keyu. Description of Charged Particle Multiplicity Distribution in High Energy Strong Interaction[J]. Chinese Physics C, 1994, 18(4): 347-352.
Qin Keyu. Description of Charged Particle Multiplicity Distribution in High Energy Strong Interaction[J]. Chinese Physics C, 1994, 18(4): 347-352. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Description of Charged Particle Multiplicity Distribution in High Energy Strong Interaction

    Corresponding author: Qin Keyu,
  • Department of Physics, Yunnan Normal Untoer,ity, Kunming 650092

Abstract: With the assumption that the probability for n-charged particles production inhadron-hadron collision is Pn=xPn(1)+(1— x)Pn(2), whithin Pn(1)= andand proper choice of 1, 2, k and x, the true multiplicity distribution in full phase space can be described successfully at the centre fo mass energy GeV. Using the experimental data of non singe-diffractive collisions between proton and antiproton at centre of mass energies of 200 and 900GeV, the supposition had beenexamined and confirmed: it is very good to describe the facts. Had been discussed the theoretical bases of supposition.

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