Hadron mass effects in power corrections to Event Shapes
Author(s)
Mateu, Vicent; Stewart, Iain W; Thaler, Jesse
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We study the effect of hadron masses on the leading power correction of dijet event-shape distributions. We define the transverse velocity operator, that describes the effects of hadron masses. It depends on the "transverse velocity" r, which is different from one only for non-vanishing hadron masses. We find that hadron-mass effects in general break universality. However we provide a simple method to identify universality classes of event shapes with a common power correction. We also compute the anomalous dimension of the power correction and the structure of the corresponding Wilson coefficient, finding a nontrivial result. © Copyright owned by the author(s).
Date issued
2013-05-21Department
Massachusetts Institute of Technology. Center for Theoretical PhysicsPublisher
Sissa Medialab
Citation
Mateu, Vicent, Stewart, Iain W. and Thaler, Jesse. 2013. "Hadron mass effects in power corrections to Event Shapes."
Version: Final published version