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Electroweak fragmentation at high energies: A Snowmass White Paper

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arxiv 2203.11129 v1 pith:63NGDNHK submitted 2022-03-21 hep-ph hep-th

classification hep-phhep-th
keywords fragmentationfunctionselectroweakenergiesradiationsregimesplittingstate
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In particle collisions at energies higher than the mass scale involved, the collinear splitting becomes the dominant phenomena. Suitable descriptions of the physics in this regime include the parton distribution functions, the initial state radiations, the final state radiations and the fragmentation functions. It is of fundamental importance to formulate those functions with consistent theoretical treatments, and to provide the adequate formalism for applications, as motivated by the recent discussions of partonic scatterings at the multi-TeV energy regime. In this report, we briefly present the resummation of the final-state logarithms as fragmentation functions for the electroweak processes. As an explicit example, we study an electroweak gauge boson splitting in the process $pp\to WZj$ and demonstrate the important effects from the fragmentation.

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  1. Electroweak Symmetry Restoration and Radiation Amplitude Zeros

    hep-ph 2024-12 conditional novelty 5.0 of 10

    The paper defines a quantitative measure of electroweak symmetry restoration, δ = M_W/2E, and proposes W±γ, W±Z, and W±H cross-section ratios near radiation amplitude zeros as new high-energy collider observables for ...

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