Soft spin correlations in final-state parton showers
arXiv:2111.01161 · doi:10.1007/JHEP03(2022)193
Abstract
We introduce a simple procedure that resolves the long-standing question of how to account for single-logarithmic spin-correlation effects in parton showers not just in the collinear limit, but also in the soft wide-angle limit, at leading colour. We discuss its implementation in the context of the PanScales family of parton showers, where it complements our earlier treatment of the purely collinear spin correlations. Comparisons to fixed-order matrix elements help validate our approach up to third order in the strong coupling, and an appendix demonstrates the small size of residual subleading-colour effects. To help probe wide-angle soft spin correlation effects, we introduce a new declustering-based non-global spin-sensitive observable, the first of its kind. Our showers provide a reference for its single-logarithmic resummation. The work in this paper represents the last step required for final-state massless showers to satisfy the broad PanScales next-to-leading logarithmic accuracy goals.
26 pages, 12 figures
References in corpus (10)
- Herwig++ Physics and Manual
- Parton showers with quantum interference
- Quantum Interference in Jet Substructure from Spinning Gluons
- MultivariateApart: Generalized Partial Fractions
- Parton showers with quantum interference: leading color, with spin
- Colour and logarithmic accuracy in final-state parton showers
- Parton showers with more exact color evolution
- Summations of large logarithms by parton showers
- Spin correlations in final-state parton showers and jet observables
- Improvements on dipole shower colour
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