2018Physical review. D/Physical review. D.Requires access

Collisional Penrose process of charged spinning particles

Ming Zhang, Jie Jiang, Yan Liu, Wenbiao Liu

Open publisher page 23 citations

Abstract

The collisional Penrose process of charged spinning particles (charged tops) near the black hole/white hole horizon (black hole and white hole horizon) for the metric of an extreme Kerr-Newman black hole is studied. We have explicitly written the equation of motion together with the energy gain of the collisional process for the massive particles. We have also investigated the effects of spin and charge hold by the particles as well as that of the angular momentum and charge possessed by the black hole/white hole on the energy extraction.

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What this paper is about

The collisional Penrose process of charged spinning particles (charged tops) near the black hole/white hole horizon (black hole and white hole horizon) for the metric of an extreme Kerr-Newman black hole is studied. We have explicitly written the equation of motion together with the energy gain of the collisional process for the massive particles. We have also investigated the effects of spin and charge hold by the particles as well as that of the angular momentum and charge possessed by the black hole/white hole on the energy extraction.

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Available abstract

The collisional Penrose process of charged spinning particles (charged tops) near the black hole/white hole horizon (black hole and white hole horizon) for the metric of an extreme Kerr-Newman black hole is studied. We have explicitly written the equation of motion together with the energy gain of the collisional process for the massive particles. We have also investigated the effects of spin and charge hold by the particles as well as that of the angular momentum and charge possessed by the black hole/white hole on the energy extraction.

Key concepts: Penrose process, Physics, Charged black hole, Rotating black hole, Black hole (networking), Charged particle, Extremal black hole, Angular momentum

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