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Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

Dr Lorenzo Tancredi

Royal Society University Research Fellow (RSURF)

Sub department

  • Rudolf Peierls Centre for Theoretical Physics
lorenzo.tancredi@physics.ox.ac.uk
Rudolf Peierls Centre for Theoretical Physics
  • About
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  • Publications

Erratum to: On the impact of non-factorisable corrections in VBF single and double Higgs production

Journal of High Energy Physics Springer Nature 2022:4 (2022) 9

Authors:

Frédéric A Dreyer, Alexander Karlberg, Lorenzo Tancredi
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Functions Beyond Multiple Polylogarithms for Precision Collider Physics

ArXiv 2203.07088 (2022)

Authors:

Jacob L Bourjaily, Johannes Broedel, Ekta Chaubey, Claude Duhr, Hjalte Frellesvig, Martijn Hidding, Robin Marzucca, Andrew J McLeod, Marcus Spradlin, Lorenzo Tancredi, Cristian Vergu, Matthias Volk, Anastasia Volovich, Matt von Hippel, Stefan Weinzierl, Matthias Wilhelm, Chi Zhang
Details from ArXiV

Three-loop helicity amplitudes for diphoton production in gluon fusion

Journal of High Energy Physics Springer Nature 2022:2 (2022) 153

Authors:

Piotr Bargieła, Fabrizio Caola, Andreas von Manteuffel, Lorenzo Tancredi
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Three-loop gluon scattering in QCD and the gluon Regge trajectory

(2021)

Authors:

Fabrizio Caola, Amlan Chakraborty, Giulio Gambuti, Andreas von Manteuffel, Lorenzo Tancredi
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Two-Loop Helicity Amplitudes for Diphoton Plus Jet Production in Full Color.

Physical review letters 127:26 (2021) 262001

Authors:

Bakul Agarwal, Federico Buccioni, Andreas von Manteuffel, Lorenzo Tancredi

Abstract:

We present the two-loop QCD amplitudes for the production of two photons and a jet at hadron colliders with full-color dependence. This is the first time that radiative corrections for a five-particle scattering process have been computed beyond the leading-color approximation at this perturbative order in QCD. The results presented in this Letter will be crucial to guaranteeing reliable predictions with unprecedented precision for diphoton production at hadron colliders. The methodologies that we describe lead to a significant simplification of the calculation and their applicability extends to a wider range of five-point scattering processes.
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