Exploring the Effects of Color Reconnection on Net-Charge Fluctuations in pp Collisions at s=2.76 TeV using PYTHIA Monash
Dibakar Dhar, Tumpa Biswas, Zubayer Ahammed, Prabir Kumar Haldar
Abstract
This work explores the effects of various color reconnection (CR) configurations on the net charge fluctuations of charged particles generated in pp collisions at a center-of-mass energy of s = 2.76 TeV, simulated with the PYTHIA Monash using the variable ν(+,-,dyn). The results are compared with experimental data from ALICE, revealing that the current PYTHIA simulation settings overestimate the net charge fluctuations relative to the experimental observations. Furthermore, ν(+,-,dyn) exhibits a clear dependence on the MPICR range parameter, where increasing the range leads to more negative ν(+,-,dyn) values, suggesting the geometric extent of CR directly modulates the strength of local charge correlation. To ensure these effects are not a trivial consequence of particle density, a comparison with a retuned NoCR baseline at fixed multiplicity was performed. This analysis confirms that CR induces a genuine dynamical shift in fluctuations that persists independently of the average charged-particle density. The study also shows that the net charge and net pion channels display the strongest suppression in Nch ν(+-,dyn) compared to the net kaon and net proton channels. Overall, the study offers a useful benchmark against experimental results and sheds light on the underlying dynamics of the PYTHIA Monash.
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