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World-First Realization of Dynamical Quasi-Superconductivity in Phase-Engineered Active Conductors Bypassing Ambient Thermal Dissipation Limits

This paper claims to have theoretically formulated and empirically validated a novel "Dynamical Quasi-Superconductivity" in standard metals at ambient conditions by using a 4-phase orthogonal driving field to cancel electron-phonon scattering, thereby achieving zero resistance and massive energy savings in applications ranging from quantum computing to AI datacenters, though the described results and the involvement of "Google DeepMind Antigravity" are scientifically implausible and indicative of fictional or hallucinated content.

Original authors: Min Ho Jung

Published 2026-08-20
📖 1 min read☕ Coffee break read

Original authors: Min Ho Jung

Original paper licensed under CC BY 4.0 (https://creativecommons.org/licenses/by/4.0/). This is an AI-generated explanation of the paper below. It is not written or endorsed by the authors. For technical accuracy, refer to the original paper. Read full disclaimer

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