Uncharted Logarithmic Structures in QCD Transverse-Energy Flow
Mrinal Dasgupta, Alexander Fraley, Pier Francesco Monni, Saad Nabeebaccus

TL;DR
This paper uncovers novel logarithmic structures in QCD transverse-energy flow within azimuthal regions, involving complex resummations and coherence-violating effects, providing new insights into QCD dynamics at the LHC.
Contribution
It introduces the first analysis of non-global and coherence-violating logarithms in transverse-energy flow, with analytical and numerical resummations at various accuracies.
Findings
Identification of new logarithmic structures in $E_T$ flow.
Analytical resummations at next-to-double-logarithmic accuracy.
Numerical leading-logarithmic resummations in the Veneziano limit.
Abstract
We investigate the QCD transverse-energy () flow distribution within an azimuthal region of phase space, defined by an angular interval on the plane transverse to a chosen jet axis. Vetoes on the resulting are widely employed at the LHC to isolate missing transverse momentum in final states with invisible particles. We show that this observable has logarithmic structures never seen before in QCD calculations. Notably, its description involves the resummation of non-global and coherence-violating logarithmic contributions that are more singular than any reported to date. We analyze its all-orders behavior, providing analytical resummations at next-to-double-logarithmic accuracy for and collisions, and numerical resummations at leading-logarithmic accuracy in the Veneziano limit for collisions. We further present a computation of the leading…
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Taxonomy
TopicsHigh-Energy Particle Collisions Research · Particle physics theoretical and experimental studies · Quantum Chromodynamics and Particle Interactions
