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Chinese Physics, 2007, Vol. 16(9): 2683-2688    DOI: 10.1088/1009-1963/16/9/032
NUCLEAR PHYSICS Prev   Next  

Evidence of intermittent fluctuation of target fragments in 84Kr--AgBr interactions at 1.7 A GeV

Zhang Dong-Hai(张东海), Li Xue-Qin(李雪琴), Jia Hui-Ming(贾会明), He Chun-Le(何春乐), Liu Fang(刘芳), Zhao Hui-Hua(赵惠华), Li Zhen-Yu(李振宇), and Li Jun-Sheng(李俊生)
Institute of Modern Physics, Shanxi Normal University, Linfen 041004, China
Abstract  Intermittency and fractal behaviour have been studied of emission spectra of target associated fragments from $^{84}$Kr--AgBr interactions at 1.7 A GeV in emission angle space and azimuthal angle space separately. The intermittent behaviour is observed in the two spaces separately. From the intermittency exponent, the anomalous fractal dimension $d_{q}$ is calculated and the variation of $d_{q}$ with the order $q$ is investigated. It is found that the anomalous dimensions are found to increase with the order of moments $q$, thereby indicating the relation of multifractality to production mechanism of target associated fragments.
Keywords:  relativistic heavy-ion collision      intermittency      nuclear emulsion  
Received:  02 December 2006      Revised:  03 February 2007      Accepted manuscript online: 
PACS:  25.75.Dw (Particle and resonance production)  
  24.60.Ky (Fluctuation phenomena)  
  25.70.Mn (Projectile and target fragmentation)  
  27.50.+e (59 ≤ A ≤ 89)  
Fund: Project supported by the National Natural Science Foundation of China (Grant No 10475054), the Foundation for Key Program of Ministry of Education of China (Grant No 205026), the Natural Science Foundation of Shanxi Province, China (Grant No 20021007) and Shanxi Provincial Foundation for Returned Scholars of China (Grant No 20031046).

Cite this article: 

Zhang Dong-Hai(张东海), Li Xue-Qin(李雪琴), Jia Hui-Ming(贾会明), He Chun-Le(何春乐), Liu Fang(刘芳), Zhao Hui-Hua(赵惠华), Li Zhen-Yu(李振宇), and Li Jun-Sheng(李俊生) Evidence of intermittent fluctuation of target fragments in 84Kr--AgBr interactions at 1.7 A GeV 2007 Chinese Physics 16 2683

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