Computer Based Analytical Simulations of the Chiral Hadronic Processes
A. Aleksejevs, M. Butler

TL;DR
This paper presents a computational framework that adapts existing quantum field theory tools to simulate chiral hadronic processes, enabling detailed calculations in effective field theories.
Contribution
It introduces a new computational hadronic model utilizing adapted quantum field theory packages for simulating chiral hadronic interactions.
Findings
Successful adaptation of existing tools for hadronic simulations
Sample calculations demonstrating model capabilities
Enhanced computational methods for subatomic physics
Abstract
The availability of computational modeling tools for subatomic physics (Form, FeynArts, FormCalc, and FeynCalc) has made it possible to perform sophisticated calculations in perturbative quantum field theory. We have adapted these packages in order to apply them to the effective chiral field theory of hadronic interactions. A detailed description of this Computational Hadronic Model is presented here, along with sample calculations.
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