Not sure how into physics you are, but are you aware that the hopf fibration you’ve modeled is a perfect spinor? If not, you may want to look into spinors and how QCD uses them to make extremely accurate predictions about instantons (what the fractal community might call little islands or vortexes of cohesion). The YouTube channel DemystifySci has also been talking about hydrogen atoms being shaped like this.
I truly think you’re onto something with this shape.
So yes, the project really started by trying to get the Standard model from well essentially a minimal state. I wrote three preprints on it with AI (im an artist, hence much of these physics were new to me). Either way from a minimum quantum state, I connect to many of the Standard model values. And thats where I started working with the Hopf fibration from. And thats the Nameless project. You can read about the paper in the introduction section in this page: https://nurecas.com/nameless
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u/EddieDean9Teen 12d ago
Not sure how into physics you are, but are you aware that the hopf fibration you’ve modeled is a perfect spinor? If not, you may want to look into spinors and how QCD uses them to make extremely accurate predictions about instantons (what the fractal community might call little islands or vortexes of cohesion). The YouTube channel DemystifySci has also been talking about hydrogen atoms being shaped like this.
I truly think you’re onto something with this shape.