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Continuing from quantum electrodynamics part 1, here we explore the mathematical machinery used to compute interactions between particles, including propagators, Feynman diagrams, cross sections. We then walk through a simple example calculation to illustrate how these tools are applied. I conclude with an introduction to the problem of divergent loop integrals and how these can be resolved using renormalisation. Recommended pre-listening is Episode 158: Quantum Electrodynamics Part 1.
If you enjoyed the podcast please consider supporting the show by making a PayPal donation or becoming a Patreon supporter.
https://www.patreon.com/jamesfodor
https://www.paypal.me/ScienceofEverything
By James Fodor4.8
634634 ratings
Continuing from quantum electrodynamics part 1, here we explore the mathematical machinery used to compute interactions between particles, including propagators, Feynman diagrams, cross sections. We then walk through a simple example calculation to illustrate how these tools are applied. I conclude with an introduction to the problem of divergent loop integrals and how these can be resolved using renormalisation. Recommended pre-listening is Episode 158: Quantum Electrodynamics Part 1.
If you enjoyed the podcast please consider supporting the show by making a PayPal donation or becoming a Patreon supporter.
https://www.patreon.com/jamesfodor
https://www.paypal.me/ScienceofEverything

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