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Investigation of self-affine multiplicity fluctuation of proton emission in 84Kr-AgBr interactions at 1.7 A GeV

  • Self-affine multiplicity scaling is investigated in the framework of a two-dimensional factorial moment methodology using the concept of the Hurst exponent (H). Investigation of the experimental data of medium-energy knocked-out target protons in 84Kr-AgBr interactions at 1.7 AGeV reveals that the best power law behavior is exhibited for H=0.4, indicating a self-affine multiplicity fluctuation pattern. Multifractality among the knocked-out target protons is also observed in the data.

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ZHANG Dong-Hai and LI Hui-Ling. Investigation of self-affine multiplicity fluctuation of proton emission in 84Kr-AgBr interactions at 1.7 A GeV[J]. Chinese Physics C, 2009, 33(5): 345-349. doi: 10.1088/1674-1137/33/5/005
ZHANG Dong-Hai and LI Hui-Ling. Investigation of self-affine multiplicity fluctuation of proton emission in 84Kr-AgBr interactions at 1.7 A GeV[J]. Chinese Physics C, 2009, 33(5): 345-349.  doi: 10.1088/1674-1137/33/5/005 shu
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Received: 2008-03-19
Revised: 2008-10-13
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Investigation of self-affine multiplicity fluctuation of proton emission in 84Kr-AgBr interactions at 1.7 A GeV

    Corresponding author: ZHANG Dong-Hai,

Abstract: 

Self-affine multiplicity scaling is investigated in the framework of a two-dimensional factorial moment methodology using the concept of the Hurst exponent (H). Investigation of the experimental data of medium-energy knocked-out target protons in 84Kr-AgBr interactions at 1.7 AGeV reveals that the best power law behavior is exhibited for H=0.4, indicating a self-affine multiplicity fluctuation pattern. Multifractality among the knocked-out target protons is also observed in the data.

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