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Bounding Noncommutative QCD

Jurco, Moller, Schraml, Schupp, and Wess have shown how to construct noncommutative SU(N) gauge theories from a consistency relation. Within this framework, we present the Feynman rules for noncommutative QCD and compute explicitly the most dangerous Lorentz-violating operator generated through radiative corrections. We find that interesting effects appear at the one-loop level, in contrast to conventional noncommutative U(N) gauge theories, leading to a stringent bound. Our results are consistent with others appearing recently in the literature that suggest collider limits are not competitive with low-energy tests of Lorentz violation for bounding the scale of spacetime noncommutativity.

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Co-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipTopic signalTopic signalRelated contextWBounding Noncommutative QCDpreprint / 2001ACarl E. CarlsonResearcherAChristopher D. CaroneResearcherARichard F. LebedResearcherThep-ph13193 worksThep-th13268 works
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Bounding Noncommutative QCD

preprint / 2001

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