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2024年10月30日

On the Dynamical Fluctuations in the Multiparticle Final States of e+ e- Collisions

  • The scaling property of factorial moments in the mulhpanicle final-states of e+e collisions is studied in both the laboratory and the thrust-axis coordinate systems by using the Jetset generator. It turns out that in both of the two cases, the 3-dimensional InF2~InM are approximately stndght lines when the phase space are divided isotropically in different direchons, showing that the dynamical fluctuations in the multiparticle final-state of e+e collisions are approximately isotropic. In the lab system, the three γ parameters obtained by fitting F2~M of px, py, pz to Ochs formula respechvely are approximately equal. In the thrust system, the three γ values obtained by fitting F2(y)~M,F2(pt)~M and F2(φ)~M are also close to each other provided the starting point in fining F2(φ)~M is chosen appropriately. All of these provide further evidence for the above assertion. Our resultS show that the essential feature, i.e. anisotropy of (approximate) isotropy, of the dynamical fluctuations in soft and hard processes can be revealed by studying the scaling property of factorial moments in the collisions. Therefore, further inveshgation of the scaling properties of factorial moments in various kinds of collision processes is significant for the understanding of the essenhal charetarishcs of collision dynamics.
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  • [1] Burnett T H et al (JACEE). Phys. Rev. Lets, 1983, 50:2062–20652 Adamus M et al (NA22). Phys. Lett, 1987, B185:200–2043 Bialas A, Peschanskj R Nucl. Phys., 1986, B273:703–718; 1988, B308:857–8674 Wu Yuanfang, Liu Danshou. Phys. Rev. Lett., 1993, 70:3197–3200 5 Agababyan N M et al (NA22). Phys. Lett., 1995, B382:305–311; 1998, B431:451–458 6 Wang S, Wang Z, Wu C Phys. Lett., 1997, B410:323–326 7 Abreu P et al (DELPHI). Nucl. Phys., 1992, B386.471–4928 Zhang Yang, Deng Yue, Liu lianshou. high Energy Phys. and Nucl. Phys. (in Chinese), 1997, 21: 130–137(张阳,邓越,刘连寿.高能物理与核物理,1997, 21: 130–137) 9 Bialas A, GazdziCki M. Phys. Lett, 1990, B252:483–486 10 Ochs W. Phys. Lett, 1990, B247: 101-106 11 Wu Yuanfang, Liu Lianshou. Science in China,1995, A38:435–455
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Get Citation
Liu Fuming, Liu Feng and Liu Lianshou. On the Dynamical Fluctuations in the Multiparticle Final States of e+ e- Collisions[J]. Chinese Physics C, 1999, 23(12): 1183-1189.
Liu Fuming, Liu Feng and Liu Lianshou. On the Dynamical Fluctuations in the Multiparticle Final States of e+ e- Collisions[J]. Chinese Physics C, 1999, 23(12): 1183-1189. shu
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Received: 1998-10-14
Revised: 1900-01-01
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On the Dynamical Fluctuations in the Multiparticle Final States of e+ e- Collisions

    Corresponding author: Liu Fuming,
  • Institite of Particle Particle,Huazhong Normal University, Wuhan430079

Abstract: The scaling property of factorial moments in the mulhpanicle final-states of e+e collisions is studied in both the laboratory and the thrust-axis coordinate systems by using the Jetset generator. It turns out that in both of the two cases, the 3-dimensional InF2~InM are approximately stndght lines when the phase space are divided isotropically in different direchons, showing that the dynamical fluctuations in the multiparticle final-state of e+e collisions are approximately isotropic. In the lab system, the three γ parameters obtained by fitting F2~M of px, py, pz to Ochs formula respechvely are approximately equal. In the thrust system, the three γ values obtained by fitting F2(y)~M,F2(pt)~M and F2(φ)~M are also close to each other provided the starting point in fining F2(φ)~M is chosen appropriately. All of these provide further evidence for the above assertion. Our resultS show that the essential feature, i.e. anisotropy of (approximate) isotropy, of the dynamical fluctuations in soft and hard processes can be revealed by studying the scaling property of factorial moments in the collisions. Therefore, further inveshgation of the scaling properties of factorial moments in various kinds of collision processes is significant for the understanding of the essenhal charetarishcs of collision dynamics.

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