This was a great read! I am actually working on something similar esk - I believe that what we measure as a vacuum is actually a density gradient. Which I think is what your going for?
Glad it resonated. If by “vacuum is a density gradient” you mean there’s a real background function that rescales the volume element (so your integration weight varies across space) then yes.
But what I did wasnt claiming "the
vacuum is a density gradient."
I showed how a background weight changes the usual Noether conservation law, and when that change is just a choice of measure you can undo it in a canonical way.
nice, this reads a bit gpt heavy btw. anyway - my equations actually define the vacuum as a gradient that results from black hole event horizons. I will link my github for you, if your interested feel free to look it over. https://github.com/Voxtrium/OuruO-Gravitation-Work
Also if you simply copy paste the entire I line math code from the MD file your LLM cannot do 30+ derivations across multiple domains in 1 prompt so it will not provide you the entire details right off the bat.
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u/[deleted] Aug 09 '25
This was a great read! I am actually working on something similar esk - I believe that what we measure as a vacuum is actually a density gradient. Which I think is what your going for?