Fermi-Dirac Correlation and Q-v)Kv(Q) Distribution

  • The Fermi-Dirac correlation of identical protons is studied. Based on the non-perturbative theory of quantum fields, we put farward a kind of source distribution-the Q-v)Kv(Q) distribution. The Fermi-Dirac correlation of(p±-p±)-pairs is calculated from this distribution. The fitted curves agree with experimental data. The Q-v)Kv distribution has more advantages than the Gauss Source distribution. The radii of the source emitting hadrons and the anomalous dimensions of the Fermi field are calculated from the Fend-Dirac correlation of identical protons.
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  • [1] Lynch iet al/i.,iPhys/i.iRev/i.iLett/i.,51(1983)1850.[2] Pochodzalla iet al/i.,iPhys/i.iLett/i.,B161(1986)275.[3] 戴启润赵树松,物理学报,44(1995)1203.[4] S.S.Zhao iet al/i.,KEXUE TONGBAO,31(1986)371.[5] Cebra iet al/i.,iPhys/i.iLett/i.,B227(1989)336.
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Dai Qirun, Ma Zhanqing, Zhao Shusong and Fermi-Dirac Correlation and Q-v)Kv(Q) Distribution[J]. Chinese Physics C, 1996, 20(11): 1014-1020.
Dai Qirun, Ma Zhanqing, Zhao Shusong and Fermi-Dirac Correlation and Q-v)Kv(Q) Distribution[J]. Chinese Physics C, 1996, 20(11): 1014-1020. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Fermi-Dirac Correlation and Q-v)Kv(Q) Distribution

    Corresponding author: Dai Qirun,
  • Department of Physics, Xinyang Normal College, Henan 4640001 Department of Physics, Yunnan University,Kunming 650091

Abstract: The Fermi-Dirac correlation of identical protons is studied. Based on the non-perturbative theory of quantum fields, we put farward a kind of source distribution-the Q-v)Kv(Q) distribution. The Fermi-Dirac correlation of(p±-p±)-pairs is calculated from this distribution. The fitted curves agree with experimental data. The Q-v)Kv distribution has more advantages than the Gauss Source distribution. The radii of the source emitting hadrons and the anomalous dimensions of the Fermi field are calculated from the Fend-Dirac correlation of identical protons.

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