Weyl covariance and the energy momentum tensors of higher-derivative free conformal field theories

被引:0
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作者
Andreas Stergiou
Gian Paolo Vacca
Omar Zanusso
机构
[1] King’s College London,Department of Mathematics
[2] INFN — Sezione di Bologna,undefined
[3] Università di Pisa and INFN — Sezione di Pisa,undefined
来源
Journal of High Energy Physics | / 2022卷
关键词
Scale and Conformal Symmetries; Field Theories in Higher Dimensions; Space-Time Symmetries;
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摘要
Energy momentum tensors of higher-derivative free scalar conformal field theories in flat spacetime are discussed. Two algorithms for the computation of energy momentum tensors are described, which accomplish different goals: the first is brute-force and highlights the complexity of the energy momentum tensors, while the second displays some features of their geometric origin as variations of Weyl invariant curved-space actions. New compact expressions for energy momentum tensors are given and specific obstructions to defining them as conformal primary operators in some spacetime dimensions are highlighted. Our discussion is also extended to higher-derivative free spinor theories, which are based on higher-derivative generalizations of the Dirac action and provide interesting examples of conformal field theories in dimension higher than two.
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