Discontinuity Method for Evaluating Scattering Amplitudes within the Worldline Formalism
Victor Miguel Banda Guzm\'an

TL;DR
This paper introduces a novel discontinuity-based method within the worldline formalism to efficiently evaluate one-loop scattering amplitudes, simplifying calculations by leveraging unitarity-inspired techniques and deriving explicit formulas for key cases.
Contribution
It develops a new framework for computing worldline master integrals using discontinuities, extending unitarity methods to the worldline formalism in quantum field theory.
Findings
Derived master formulas for four-point discontinuities.
Demonstrated the method with illustrative examples.
Simplified evaluation of scattering amplitudes in specific cases.
Abstract
The worldline formalism offers an alternative framework to the standard diagrammatic approach in quantum field theory, grounded in first-quantized relativistic path integrals. Over recent decades, this formalism has attracted growing interest due to its potential applications and computational advantages. As a result, a collection of worldline master integrals has been derived within this approach. However, efficient mathematical tools for evaluating these integrals remain limited. Motivated by unitarity methods used in the conventional formalism of quantum field theory, this work proposes a novel framework for evaluating one-loop worldline master integrals, up to a rational function in the kinematical external invariants, through the computation of their discontinuities. Similarly to standard unitarity techniques, the method involves decomposing an -point one loop amplitude in…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Quantum Mechanics and Non-Hermitian Physics · Noncommutative and Quantum Gravity Theories
