期刊文献+

Multiplicity fluctuation analysis of target residues in nucleusemulsion collisions at a few hundred MeV/nucleon

Multiplicity fluctuation analysis of target residues in nucleusemulsion collisions at a few hundred MeV/nucleon
原文传递
导出
摘要 Multiplicity fluctuation of the target evaporated fragments emitted in 290 MeV/u 12C-AgBr, 400 MeV/u 12C-AgBr, 400 MeV/u 20Ne-AgBr and 500 MeV/u 56Fe-AgBr interactions is investigated using the scaled factorial moment method in two-dimensional normal phase space and cumulative variable space, respectively. It is found that in normal phase space the scaled factorial moment (ln(Fq)) increases linearly with the increase of the divided number of phase space (lnM) for lower q-value and increases linearly with the increase of lnM, and then becomes saturated or decreased for a higher q-value. In cumulative variable space ln(Fq) decreases linearly with increase of lnM. This indicates that no evidence of non-statistical multiplicity fluctuation is observed in our data sets. So, any fluctuation indicated in the results of normal variable space analysis is totally caused by the non-uniformity of the single-particle density distribution. Multiplicity fluctuation of the target evaporated fragments emitted in 290 MeV/u 12C-AgBr, 400 MeV/u 12C-AgBr, 400 MeV/u 20Ne-AgBr and 500 MeV/u 56Fe-AgBr interactions is investigated using the scaled factorial moment method in two-dimensional normal phase space and cumulative variable space, respectively. It is found that in normal phase space the scaled factorial moment (ln(Fq)) increases linearly with the increase of the divided number of phase space (lnM) for lower q-value and increases linearly with the increase of lnM, and then becomes saturated or decreased for a higher q-value. In cumulative variable space ln(Fq) decreases linearly with increase of lnM. This indicates that no evidence of non-statistical multiplicity fluctuation is observed in our data sets. So, any fluctuation indicated in the results of normal variable space analysis is totally caused by the non-uniformity of the single-particle density distribution.
出处 《Chinese Physics C》 SCIE CAS CSCD 2014年第7期14-17,共4页 中国物理C(英文版)
基金 Supported by National Science Foundation of China(11075100),Natural Science Foundation of Shanxi Province,China(20110110012) Shanxi Provincial Foundation for Returned Overseas Chinese Scholars,China(2011-058)
关键词 heavy-ion collisions target fragmentation non-statistical fluctuation nuclear emulsion heavy-ion collisions, target fragmentation, non-statistical fluctuation, nuclear emulsion
  • 相关文献

参考文献4

二级参考文献60

  • 1Powell C F, Fowler P H and Perkins D H 1959 The Study of Elementary Particles by Photographic Method (Oxford: Pergamon) p452
  • 2Ghosh D, Ghosh P, Ghosh A and Roy J 1994 J. Phys. G 20 1077
  • 3Ghosh D, Deb A, Bhattacharyya S, Ghosh J, Das R and Mukherjee S 2003 Intern. J. Mod. Phys. E 12 407
  • 4Ghosh D, Deb A, Bhattacharyya S and Ghosh J 2004 Int. J. Mod. Phys. E 13 737
  • 5Ghosh D, Deb A, Chattopadhyay R, Sarkar S, Jafry A K, Lahiri M, Das S, Purkait K, Biswas B, Roychoudhury J and Das S 1998 Phys. Rev. D 58 3553
  • 6Ghosh D, Chattopadhyay R, Sarkar S, Jafry A K, Lahiri M, Das S, Purkait K, Roychoudhury J, Biswas B and Deb A 1997 Z. Phys. C 73 269
  • 7Zhang D H, Li X Q, Jia H M, He C L, Liu F, Zhao H H, Li Z Y and Li J S 2007 Chin. Phys. 16 2683
  • 8Van Hove L 1969 Phys. Lett. B 28 429
  • 9Mandelbrot B B 1991 in Dynamics of Fractal Surfaces eds. Family E and Viesek T (Singapore: World Scientific)
  • 10Zhang D H, Liu F, He C L, Zhao H H, Jia H M, Li X Q, Li Z Y and Li J S 2006 Chin. Phys. 15 2564

共引文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部