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String Formation Beyond Leading Colour

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arxiv 1505.01681 v2 pith:U2BSR6JY submitted 2015-05-07 hep-ph

classification hep-ph
keywords collisionscolourstringbeyondformformationleadingmodel
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We present a new model for the hadronisation of multi-parton systems, in which colour correlations beyond leading $N_C$ are allowed to influence the formation of confining potentials (strings). The multiplet structure of $SU(3)$ is combined with a minimisation of the string potential energy, to decide between which partons strings should form, allowing also for "baryonic" configurations (e.g., two colours can combine coherently to form an anticolour). In $e^+e^-$collisions, modifications to the leading-colour picture are small, suppressed by both colour and kinematics factors. But in $pp$ collisions, multi-parton interactions increase the number of possible subleading connections, counteracting their naive $1/N_C^2$ suppression. Moreover, those that reduce the overall string lengths are kinematically favoured. The model, which we have implemented in the PYTHIA 8 generator, is capable of reaching agreement not only with the important $\left<p_\perp\right>(n_\mathrm{charged})$ distribution but also with measured rates (and ratios) of kaons and hyperons, in both $ee$ and $pp$ collisions. Nonetheless, the shape of their $p_\perp$ spectra remains challenging to explain.

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Forward citations

Cited by 4 Pith papers

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  4. Herwig 7 with the Lund String Model: Tuning and Comparative Hadronization Studies

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