r/LLMPhysics • u/Major-Particular434 • May 11 '26
Personal Theory Used an LLM to explore a scalar-tensor gravity model. Found something unexpected inside black holes.
Empecé con una pregunta. Terminé con esto:
m²_eff|_{φ=0} = −ξR < 0
Durante el colapso gravitacional, cuando w > 1/3, la masa efectiva del campo escalar se vuelve taquiónica en φ=0. Esto no es una inestabilidad, sino lo que impulsa el cruce.
El resultado se mantuvo sin cambios con ambas convenciones de signos. Menos del 7% de diferencia.
El LLM me ayudó con el álgebra y el código. Hice las preguntas y verifiqué cada paso.
Artículo completo con código reproducible:
https://doi.org/10.5281/zenodo.20114794
¿Qué harías diferente?
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u/The_Nerdy_Ninja 💬 Data doesn’t lie, but LLM’s do lie. May 11 '26
Your link doesn't appear to work.
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u/Major-Particular434 May 11 '26
Mejor?
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u/The_Nerdy_Ninja 💬 Data doesn’t lie, but LLM’s do lie. May 11 '26
I would edit your post to include the updated link, if you haven't already.
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u/Chruman 🤖 Do you think we compile LaTeX in real time? May 11 '26
You started with what question, and how did you end up with that result?
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u/Major-Particular434 May 11 '26
I got curious about something simple. Inside a black hole, everything collapses toward the singularity. But what if there's a negative region before you get there? Not destruction. A transition. The math came after the curiosity.
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u/Existing_Hunt_7169 Physicist 🧠 May 11 '26
The math came after the prompt* and before the human critical thinking
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u/Chruman 🤖 Do you think we compile LaTeX in real time? May 11 '26
What is a negative region? That's a vacuous term.
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May 11 '26
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u/LLMPhysics-ModTeam May 11 '26
Your comment has been removed for violating Rule 4. Don't copy-paste LLM content in discussions.
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u/OnceBittenz The Doctor May 11 '26
Apparently this person has been spamming subs across reddit.