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Factorization and resummation for jet processes

delete2016-11-04
delete48
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T
Thomas Becher *
M
Matthias Neubert
R
Rothen, Lorena
D
Ding Yu Shao
DOI:10.1007/JHEP11(2016)019delete
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Abstract

Abstract

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From a detailed analysis of cone-jet cross sections in effective field theory, we obtain novel factorization theorems which separate the physics associated with different energy scales present in such processes. The relevant low-energy physics is encoded in Wilson lines along the directions of the energetic particles inside the jets. This multi-Wilson-line structure is present even for narrow-cone jets due to the relevance of small-angle soft radiation. We discuss the renormalization-group equations satisfied by these operators. Their solution resums all logarithmically enhanced contributions to such processes, including non-global logarithms. Such logarithms arise in many observables, in particular whenever hard phase-space constraints are imposed, and are not captured with standard resummation techniques. Our formalism provides the basis for higher-order logarithmic resummations of jet and other non-global observables. As a nontrivial consistency check, we use it to obtain explicit two-loop results for all logarithmically enhanced terms in cone-jet cross sections and verify those against numerical fixed-order computations.
Keywords:
Effective field theories
Perturbative QCD
Renormalization Group
Resummation
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Journal

Journal of High Energy Physics cover
Journal of High Energy Physics
IF:
5.5
Papers:
3.9W
Citations:
13.7W

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A
albert einstein center for fundamental physics
Scholars:
615
Papers: 1.1K
Citations: 1
C
Cornell University
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6.3W
Papers: 5.4W
Citations: 10.9W
U
University of Bern
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3.9W
Papers: 3.1W
Citations: 4.8W
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