Hello Axelera Community! 👋
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I am excited to share my latest theoretical physics and cosmology research with this network of innovators. My paper challenges the standard isolated conservative gravitational models (Newtonian/GR) by introducing an open-system thermodynamic approach to celestial mechanics.
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**Title:** A Hierarchical Push-Pull Cosmological Model: Inter-Universal Energy Cascades and Orbital Equilibrium
**Author:** Gautam Pal (ORCID: 0009-0004-3456-9972)
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**Core Concept:**
How do hundreds of celestial bodies maintain precise, non-decaying orbits across billions of years despite tidal friction and gravitational wave radiation?Â
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This framework postulates that celestial orbital stability is actively regulated by a persistent inter-universal network. Energy flows continuously through a structured force cascade descending through 5 distinct tiers:
1. Tier 0 (Ωanti): The Primordial Anti-Universe
2. Tier 1 (M−): The Negative Sun
3. Tier 2 (M+): The Positive Baryonic Sun
4. Tier 3 (mp): Planetary Bodies
5. Tier 4 (ms): Satellites
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By perfectly balancing long-range attractive pull forces (1/r²) with short-range repulsive push leakage (1/r³), this model demonstrates how orbits are pinned at a fixed metric ratio (r_stable), preventing both catastrophic divergence and orbital decay.
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Given the immense computational power required to simulate such multi-tiered universal cascades, I would love to hear thoughts from the AI and edge-computing experts here on how we might computationally model or simulate these open-thermodynamic tensor mechanics!
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📄 **Read the full Version 1.0 paper here:**
* Zenodo: https://doi.org/10.5281/zenodo.23213258
* Internet Archive: https://archive.org/details/hierarchical-push-pull-cosmology-paper
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Looking forward to your thoughts a
nd technical discussions!
