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Non-global logarithms in inter-jet energy flow with kt clustering requirement
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Recent work in inter-jet energy flow has identified a class of leading logarithms previously not considered in the literature. These so-called non-global logarithms have been shown to have significant numerical impact on gaps-between-jets calculations at the energies of current particle colliders. Here we calculate, at fixed order and to all orders, the effect of applying clustering to the gluonic final state responsible for these logarithms for a trivial colour flow 2 jet system. Such a clustering algorithm has already been used for experimental measurements at HERA. We find that the impact of the non-global logarithms is reduced, but not removed, when clustering is demanded, a result which is of considerable interest for energy flow observable calculations.
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Cited by 1 Pith paper
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The anti-k_t jet clustering algorithm
The anti-k_t algorithm yields conical jets with equal active and passive areas, zero area anomalous dimensions, rigid-boundary non-global logarithms, and a universal Milan factor, serving as an IRC-safe substitute for...
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