Two-Loop QCD correction to massive spin-2 resonance → 3 gluons

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Abstract

We present the O(αs3) virtual QCD corrections to the process h → g + g + g due to interference of born and two-loop amplitudes, where h is a massive spin-2 particle and g is the gluon. We assume that the SM fields couple to h through the SM energy momentum tensor. Our result constitutes one of the ingredients to full NNLO QCD contribution to production of a massive spin-2 particle along with a jet in the scattering process at the LHC. In particular, this massive spin-2 could be a KK mode of a ADD graviton in large extra dimensional model or a RS KK mode in warped extra dimensional model or a generic massive spin-2. In addition, it provides an opportunity to study the ultraviolet and infrared structures of QCD amplitudes involving tensorial coupling resulting from energy momentum operator. Using dimensional regularization, we find that infrared poles of this amplitude are in agreement with the proposal by Catani confirming the factorization property of QCD amplitudes with tensorial insertion. © 2014 The Author(s).

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Ahmed, T., Mahakhud, M., Mathews, P., Rana, N., & Ravindran, V. (2014). Two-Loop QCD correction to massive spin-2 resonance → 3 gluons. Journal of High Energy Physics, 2014(5). https://doi.org/10.1007/JHEP05(2014)107

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