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Active Gravitational Wave Generation via Bilayer Superconducting Lattice Modulation: A Theoretical Framework

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Zenodo2026-08-08 更新2026-08-13 收录
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Repository: Zenodo Preprint Subject: High-Frequency Gravitational Waves, Quantum Electronic Transitions, Solid-State Physics Abstract This paper presents a theoretical framework for the active generation and detection of High-Frequency Gravitational Waves (HFGWs) through quantum electronic transitions in asymmetric superconducting bilayers. Moving beyond conventional macro-scale methods of gravitational wave production, we examine how Josephson junction architectures can induce non-linear phase shifts within a discrete hexagonal stationary light field. By defining the system through a Mod 9 invariant and a 5184 frequency threshold (72^2), we establish the mathematical conditions necessary for phase-space impedance matching and temporal lattice modulation.

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2026-08-08
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