The Solaris Protocol: Load-Independent Energy Transport & The 500% Gain Sphere Reactor
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This dataset creates a bridge between macro-scale geometric laws and micro-scale quantum thermodynamics. Building upon The 0.25 Protocol (a geometric phase distribution law), we conducted a series of experiments on IBM Quantum superconducting processors (ibm_torino & ibm_fez). The results confirm that specific geometric arrangements ($k=3, \theta \approx 0.015\pi$) induce a state of "Source Immunity" and "Self-Sustaining Resonance." Key Experimental Phases included in this dataset: The Sphere Reactor (Phase I): The Singularity: The initial discovery where a closed spherical topology achieved a ~500% energy gain relative to baseline injection. This proves the "Gathering" capability of the protocol. Solaris & Supernova (Phase III & IV): The Transmission: Verification of a "One-to-Three" broadcast system where the source ring maintained ~50% saturation even under extreme loads ($\gamma_{sink} = 0.5\pi$) and extended duration (Depth=1000). Validated on multiple architectures. Infinity (Phase V): The Eternity: Evidence of negative entropy characteristics, where the system locked into a high-energy state (51.78%) over long evolutionary cycles. Theoretical Foundation: This project is the quantum implementation of The 0.25 Protocol. Core Protocol Definition: https://zenodo.org/records/18172250



