Repetitive Penrose process in Kerr-Newman black holes permits evolution through neutral states with charge sign reversal and near-unity efficiency near a critical charge without violating area theorem or cosmic censorship.
Singl e versus the repetitive Penrose process in a Kerr black hole,
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In Kerr spacetime, energy conservation during particle decay requires the parent's rest-mass loss to convert into kinetic energy of the decay products.
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Repetitive Penrose process for charged particles in Kerr-Newman black holes
Repetitive Penrose process in Kerr-Newman black holes permits evolution through neutral states with charge sign reversal and near-unity efficiency near a critical charge without violating area theorem or cosmic censorship.
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The formalism of energy conservation during particle decay in the Kerr spacetime
In Kerr spacetime, energy conservation during particle decay requires the parent's rest-mass loss to convert into kinetic energy of the decay products.