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On conformal correlators and blocks with spinors in general dimensions

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arxiv 1706.02835 v3 pith:RBQQOPRM submitted 2017-06-09 hep-th

classification hep-th
keywords conformalfunctionsspinorsblocksdimensionsactingcorrelationdifferential
verification ladder T0 review T1 audit T2 compute T3 formal
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We compute conformal correlation functions with spinor, tensor, and spinor-tensor primary fields in general dimensions with Euclidean and Lorentzian metrics. The spinors are taken to be Dirac spinors, which exist for any dimensions. For this, the embedding space formalism is employed and the polarisation spinors are introduced to simplify the computations. Three-point functions are rewritten in terms of differential operators acting on scalar-scalar-tensor correlation functions. This enables us to determine conformal blocks for four-point functions with scalar and spinor fields by acting the differential operators on scalar conformal blocks, which will be useful in finding their geodesic Witten diagrams.

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    Wigner particles decompose uniquely into Lorentz principal-series representations, with explicit translation kernels showing that unitary translations stay within the principal series.

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