3,848 research outputs found

    Nuclear attenuation of high energy multi-hadron systems in the string model

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    Nuclear attenuation of the multi-hadron systems in the string model is considered. The improved two-scale model with set of parameters obtained recently for the single hadron attenuation is used for calculation of the multiplicity ratios of the one-, two- and three-hadron systems electroproduced on nuclear and deuterium targets. The comparison of the features of the one-, two- and three-hadron systems is performed. The predictions of the model for multiplicity ratios of multi-hadron systems as functions of different convenient variables are presented.Comment: 7 pages, 6 figure

    Simple parameterization of nuclear attenuation data

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    Based on the nuclear attenuation data obtained by the HERMES experiment on nitrogen and krypton nuclei, it is shown that the nuclear attenuation RMhR_M^{h} can be parametrised in a form of a linear polynomial P1=a11P_1=a_{11} + τa12\tau a_{12}, where τ\tau is the formation time, which depends on the energy of the virtual photon ν\nu and fraction of that energy zz carried by the final hadron. Three widely known parameterizations for τ\tau were used for the performed fit. The fit parameters a11a_{11} and a12a_{12} do not depend on ν\nu and zz
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