But then when the energy becomes great enough and it snaps into a new pair of gluons, do those new gluons go anywhere or do they stay in between the original pair of particles. Do the original particles shoot off into the distance because the force holding them together got converted into some new particles?
Is there a link where I could read more? At these super small scales all my intuitions break down so I'd like something more mathematical to get a grasp on things :)
Just like photons arise from the curvature of the electric charge field.
This is extremely complicated, it's called gauge theory.
> Is there a link where I could read more?
Ask your favourite LLM, it will explain much better.
Or 5 hour video on the subject, but with all the math:
So in the model of two proton beams near c intersecting you essentially have the protons go through a phase change- they almost melt into a quark-gluon plasma that's stupendously hot- followed by a rapid condensation into a showers of kaons, pions, new protons... all of it adds up to the original mass of the protons in the collision. If you surround the area of that collision with EXTREMELY sensitive calorimeters and devices designed to monitor this process you can do some incredible accounting to find out what if anything is missing. That missing bit would be a possible new particle, some new physics, or as is often the case a chance to learn more about possible errors in measurement.
https://modern-physics.org/hadronization/
https://profmattstrassler.com/articles-and-posts/particle-ph...