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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.

本研究构建了一种全新机制,用于解释黑洞(BHs)通过经手术式隔离的量子囊中的共振能量抛射产生相对论喷流(relativistic jet),为无吸积盘或辐射低效流的天体系统中的喷流现象提供了理论解释。基于非交换统一框架[1],我们论证了视界尺度的手术操作如何生成受限振荡区域,其中规范场(gauge fields, $A_{mu u}$)与费米子凝聚态(fermionic condensates, $Psi_{mu u}$)呈现类激光相干性。当达到临界能量阈值时,穿过手术隔离膜的共振隧穿(resonant tunneling)效应会产生洛伦兹因子(Lorentz factors, $gamma_{ ext{jet}} > 10^2$)的准直喷流(collimated jets)。本模型的关键预言包括: 1) 量子化喷流能量 $E_n = nhbar p |Lambda| c$, 2) 引力波(GW)回波与喷流的相关性,其延迟时间$Delta t sim frac{GM}{c^3} lnleft(frac{M}{M_ ext{Pl}} ight)$(其中$M_ ext{Pl}$为普朗克质量), 3) 偏振依赖的准直角$vartheta propto cos^{-1}(1/sqrt{3})$。 该模型无需依赖吸积盘即可解释喷流的启动机制,并对M87*与耀变体(blazars)的可观测特征做出了预言。

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Zenodo
创建时间:
2025-05-28
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