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On the pair-electromagnetic pulse from an electromagnetic Black Hole surrounded by a Baryonic Remnant

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arxiv astro-ph/0004257 v1 pith:FM4J2AAE submitted 2000-04-18 astro-ph

On the pair-electromagnetic pulse from an electromagnetic Black Hole surrounded by a Baryonic Remnant

classification astro-ph
keywords baryonicpulseapproximationdyadosphereshellconstant-thicknessembhenergy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The interaction of an expanding Pair-Electromagnetic pulse (PEM pulse) with a shell of baryonic matter surrounding a Black Hole with electromagnetic structure (EMBH) is analyzed for selected values of the baryonic mass at selected distances well outside the dyadosphere of an EMBH. The dyadosphere, the region in which a super critical field exists for the creation of electron-positron pairs, is here considered in the special case of a Reissner-Nordstrom geometry. The interaction of the PEM pulse with the baryonic matter is described using a simplified model of a slab of constant thickness in the laboratory frame (constant-thickness approximation) as well as performing the integration of the general relativistic hydrodynamical equations. The validation of the constant-thickness approximation, already presented in a previous paper Ruffini, et al.(1999) for a PEM pulse in vacuum, is here generalized to the presence of baryonic matter. It is found that for a baryonic shell of mass-energy less than 1% of the total energy of the dyadosphere, the constant-thickness approximation is in excellent agreement with full general relativistic computations. The approximation breaks down for larger values of the baryonic shell mass, however such cases are of less interest for observed Gamma Ray Bursts (GRBs). On the basis of numerical computations of the slab model for PEM pulses, we describe (i) the properties of relativistic evolution of a PEM pulse colliding with a baryonic shell; (ii) the details of the expected emission energy and observed temperature of the associated GRBs for a given value of the EMBH mass; 10^3 solar masses, and for baryonic mass-energies in the range 10^{-8} to 10^{-2} the total energy of the dyadosphere.

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  1. Trapped fireshell (halo) of photons and pairs around black-hole horizon: source for ultra-high-energy particles

    astro-ph.HE 2025-12 reject novelty 5.0

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