NUCLEAR PHYSICS |
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Self-affine Multiplicity Fluctuation of Slow Particles in 16O-AgBr Collisions at 3.7 A GeV |
LI Jun-Sheng1,2, ZHANG Dong-Hai1, LI Hui-Ling1, LIU Fu-Hu2 |
1Institute of Modern Physics, Shanxi Normal University, Linfen 0410042Institute of Theoretical Physics, Shanxi University, Taiyuan 030006 |
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Cite this article: |
LI Jun-Sheng, ZHANG Dong-Hai, LI Hui-Ling et al 2009 Chin. Phys. Lett. 26 012401 |
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Abstract We study the slow particles in 16O-AgBr collisions at 3.7 A GeV in nuclear emulsion with the method of two-dimensional factorial moments using the Hurst exponent. Our investigation reveals the power law behaviour, exhibited in self-affine analysis, better than that in self-similar analysis. This work shows a clear evidence of self-affine target fragmentation.
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Keywords:
24.60.Ky
25.70.Mn
25.75.-q
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Received: 14 July 2008
Published: 24 December 2008
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PACS: |
24.60.Ky
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(Fluctuation phenomena)
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25.70.Mn
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(Projectile and target fragmentation)
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25.75.-q
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(Relativistic heavy-ion collisions (collisions induced by light ions studied to calibrate relativistic heavy-ion collisions should be classified under both 25.75.-q and sections 13 or 25 appropriate to the light ions))
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