We formulate PanScales parton showers for hadron collisions so as to achieve next-to-leading logarithmic (NLL) accuracy across a broad set of observables. We do so specifically for colour singlet production. Relative to the existing PanScales final-state showers, the main new question is that of how to redistribute momentum imbalances from initial-state branching across the remainder of the event. We present tests of the showers at fixed order, including the treatment of full colour for soft-collinear emissions and of spin correlations in both the soft and collinear domains. We also include comparisons to a formulation of a standard dipole shower, the current leading-logarithmic state of the art. A forthcoming companion paper [1] will explore all-order tests of the new showers.

PanScales parton showers for hadron collisions: formulation and fixed-order studies

van Beekveld M.;Ferrario Ravasio S.;
2022-01-01

Abstract

We formulate PanScales parton showers for hadron collisions so as to achieve next-to-leading logarithmic (NLL) accuracy across a broad set of observables. We do so specifically for colour singlet production. Relative to the existing PanScales final-state showers, the main new question is that of how to redistribute momentum imbalances from initial-state branching across the remainder of the event. We present tests of the showers at fixed order, including the treatment of full colour for soft-collinear emissions and of spin correlations in both the soft and collinear domains. We also include comparisons to a formulation of a standard dipole shower, the current leading-logarithmic state of the art. A forthcoming companion paper [1] will explore all-order tests of the new showers.
2022
11
11
19
19
https://arxiv.org/abs/2205.02237
Parton Shower; Resummation
van Beekveld M.; Ferrario Ravasio S.; Salam G.P.; Soto-Ontoso A.; Soyez G.; Verheyen R.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/2118292
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