Techniques for high-multiplicity scattering amplitudes and applications to precision collider physics
In this thesis, we present state-of-the-art techniques for the computation of scattering amplitudes in Quantum Field Theories. Following an introduction to the topic, we describe a robust framework that enables the calculation of multi-scale two-loop amplitudes directly relevant to modern particle physics phenomenology at the Large Hadron Collider and beyond. We discuss in detail the use of finite fields to bypass the algebraic complexity of such computations, as well as the method of integration-by-parts relations and differential equations. We apply our framework to calculate the two-loop amplitudes contributing to three process: Higgs boson production in association with a bottom-quark pair, W boson production with a photon and a jet, as well as lepton-pair scattering with an off-shell and an on-shell photon. Finally, we draw our conclusions and discuss directions for future progress of amplitude computations.
| Item Type | Thesis (Doctoral) |
|---|---|
| Divisions | Faculty of Science > Physics, Department of |
| Date Deposited | 02 Feb 2024 09:23 |
| Last Modified | 16 Mar 2026 18:35 |
-
picture_as_pdf - JK_PhD_thesis_corrected.pdf
-
subject - Accepted Version