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Reparameterization Invariant Collinear Operators

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arxiv 0809.1093 v2 pith:BX72RCMA submitted 2008-09-08 hep-ph nucl-th

Reparameterization Invariant Collinear Operators

classification hep-ph nucl-th
keywords operatorscollinearexpansionjetsreparameterizationbasisdirectionsenergetic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In constructing collinear operators, which describe the production of energetic jets or energetic hadrons, important constraints are provided by reparameterization invariance (RPI). RPI encodes Lorentz invariance in a power expansion about a collinear direction, and connects the Wilson coefficients of operators at different orders in this expansion to all orders in alphas. We construct reparameterization invariant collinear objects. The expansion of operators built from these objects provides an efficient way of deriving RPI relations and finding a minimal basis of operators, particularly when one has an observable with multiple collinear directions and/or soft particles. Complete basis of operators are constructed for pure glue currents at twist-4, and for operators involving multiple collinear directions, including those appearing in e+e- -> 3 jets, and for pp-> 2 jets initiated via gluon-fusion.

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Cited by 2 Pith papers

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