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Relativistic Jets as Resonant Emission from Surgically Isolated Black Holes in Noncommutative Spacetime

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Zenodo2025-05-29 更新2026-05-26 收录
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This work establishes a novel mechanism for relativistic jet formation from black holes (BHs) through resonant energy ejection in surgically isolated quantum capsules, providing an explanation for jets in systems without accretion disks or with radiatively inefficient flows.. Building on the noncommutative unification framework[1], we demonstrate how horizon-scale surgery creates confined oscillatory domains where gauge fields (Aµν ) and fermionic condensates (Ψµν ) develop laser-like coherence. At critical energy thresholds, resonant tunneling through the surgical membrane generates collimated jets with Lorentz factors γjet > 10^2. Key predictions include: 1) Quantized jet energies En = nh¯p |Λ|c, 2) Gravitational wave (GW) echo-jet correlations with delay ∆t ∼ GM/c3ln(M/MPl), and 3) Polarization-dependent collimation angles ϑ ∝ cos−1(1/√3). The modelresolves jet launching without accretion disks and predicts observable signatures for M87* and blazars, naturally explains gamma-ray bursts as resonant surgical jets from newborn black holes.

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Zenodo
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2025-05-29
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