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arXiv · hep-ph/9306215

Studying minijets via the $p_T$ dependence of two-particle correlation in azimuthal angle $ϕ$

Abstract

Following my previous proposal that two-particle correlation functions can be used to resolve the minijet contribution to particle production in minimum biased events of high energy hadronic interactions, I study the $p_T$ and energy dependence of the correlation. Using HIJING Monte Carlo model, it is found that the correlation $c(ϕ_1,ϕ_2)$ in azimuthal angle $ϕ$ between two particles with $p_T>p_T^{cut}$ resembles much like two back-to-back jets as $p_T^{cut}$ increases at high colliding energies due to minijet production. It is shown that $c(0,0)-c(0,π)$, which is related to the relative fraction of particles from minijets, increases with energy. The background of the correlation for fixed $p_T^{cut}$ also grows with energy due to the increase of multiple minijet production. Application of this analysis to the study of jet quenching in ultrarelativistic heavy ion collisions is also discussed.

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BibTeXRIS

Xin-Nian Wang. 1993-06-02. Studying minijets via the $p_T$ dependence of two-particle correlation in azimuthal angle $ϕ$. https://doi.org/10.1103/physrevd.47.2754

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