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On Gamma-Ray Bursts

(Shortened) We show by example how the uncoding of Gamma-Ray Bursts (GRBs) offers unprecedented possibilities to foster new knowledge in fundamental physics and in astrophysics. After recalling some of the classic work on vacuum polarization in uniform electric fields by Klein, Sauter, Heisenberg, E...

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Autores principales: Ruffini, Remo, Bernardini, Maria Grazia, Bianco, Carlo Luciano, Caito, Letizia, Chardonnet, Pascal, Cherubini, Christian, Dainotti, Maria Giovanna, Fraschetti, Federico, Geralico, Andrea, Guida, Roberto, Patricelli, Barbara, Rotondo, Michael, Hernandez, Jorge Armando Rueda, Vereshchagin, Gregory, Xue, She-Sheng
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1142/9789812834300_0019
http://cds.cern.ch/record/1100141
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author Ruffini, Remo
Bernardini, Maria Grazia
Bianco, Carlo Luciano
Caito, Letizia
Chardonnet, Pascal
Cherubini, Christian
Dainotti, Maria Giovanna
Fraschetti, Federico
Geralico, Andrea
Guida, Roberto
Patricelli, Barbara
Rotondo, Michael
Hernandez, Jorge Armando Rueda
Vereshchagin, Gregory
Xue, She-Sheng
author_facet Ruffini, Remo
Bernardini, Maria Grazia
Bianco, Carlo Luciano
Caito, Letizia
Chardonnet, Pascal
Cherubini, Christian
Dainotti, Maria Giovanna
Fraschetti, Federico
Geralico, Andrea
Guida, Roberto
Patricelli, Barbara
Rotondo, Michael
Hernandez, Jorge Armando Rueda
Vereshchagin, Gregory
Xue, She-Sheng
author_sort Ruffini, Remo
collection CERN
description (Shortened) We show by example how the uncoding of Gamma-Ray Bursts (GRBs) offers unprecedented possibilities to foster new knowledge in fundamental physics and in astrophysics. After recalling some of the classic work on vacuum polarization in uniform electric fields by Klein, Sauter, Heisenberg, Euler and Schwinger, we summarize some of the efforts to observe these effects in heavy ions and high energy ion collisions. We then turn to the theory of vacuum polarization around a Kerr-Newman black hole, leading to the extraction of the blackholic energy, to the concept of dyadosphere and dyadotorus, and to the creation of an electron-positron-photon plasma. We then present a new theoretical approach encompassing the physics of neutron stars and heavy nuclei. It is shown that configurations of nuclear matter in bulk with global charge neutrality can exist on macroscopic scales and with electric fields close to the critical value near their surfaces. These configurations may represent an initial condition for the process of gravitational collapse, leading to the creation of an electron-positron-photon plasma: the basic self-accelerating system explaining both the energetics and the high energy Lorentz factor observed in GRBs. We then turn to recall the two basic interpretational paradigms of our GRB model. [...] We then turn to the special role of the baryon loading in discriminating between "genuine" short and long or "fake" short GRBs [...] We finally turn to the GRB-Supernova Time Sequence (GSTS) paradigm: the concept of induced gravitational collapse. [...] We then present some general conclusions.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
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spelling cern-11001412021-05-03T20:10:22Zdoi:10.1142/9789812834300_0019http://cds.cern.ch/record/1100141engRuffini, RemoBernardini, Maria GraziaBianco, Carlo LucianoCaito, LetiziaChardonnet, PascalCherubini, ChristianDainotti, Maria GiovannaFraschetti, FedericoGeralico, AndreaGuida, RobertoPatricelli, BarbaraRotondo, MichaelHernandez, Jorge Armando RuedaVereshchagin, GregoryXue, She-ShengOn Gamma-Ray BurstsAstrophysics and Astronomy(Shortened) We show by example how the uncoding of Gamma-Ray Bursts (GRBs) offers unprecedented possibilities to foster new knowledge in fundamental physics and in astrophysics. After recalling some of the classic work on vacuum polarization in uniform electric fields by Klein, Sauter, Heisenberg, Euler and Schwinger, we summarize some of the efforts to observe these effects in heavy ions and high energy ion collisions. We then turn to the theory of vacuum polarization around a Kerr-Newman black hole, leading to the extraction of the blackholic energy, to the concept of dyadosphere and dyadotorus, and to the creation of an electron-positron-photon plasma. We then present a new theoretical approach encompassing the physics of neutron stars and heavy nuclei. It is shown that configurations of nuclear matter in bulk with global charge neutrality can exist on macroscopic scales and with electric fields close to the critical value near their surfaces. These configurations may represent an initial condition for the process of gravitational collapse, leading to the creation of an electron-positron-photon plasma: the basic self-accelerating system explaining both the energetics and the high energy Lorentz factor observed in GRBs. We then turn to recall the two basic interpretational paradigms of our GRB model. [...] We then turn to the special role of the baryon loading in discriminating between "genuine" short and long or "fake" short GRBs [...] We finally turn to the GRB-Supernova Time Sequence (GSTS) paradigm: the concept of induced gravitational collapse. [...] We then present some general conclusions.arXiv:0804.2837oai:cds.cern.ch:11001412008-04-18
spellingShingle Astrophysics and Astronomy
Ruffini, Remo
Bernardini, Maria Grazia
Bianco, Carlo Luciano
Caito, Letizia
Chardonnet, Pascal
Cherubini, Christian
Dainotti, Maria Giovanna
Fraschetti, Federico
Geralico, Andrea
Guida, Roberto
Patricelli, Barbara
Rotondo, Michael
Hernandez, Jorge Armando Rueda
Vereshchagin, Gregory
Xue, She-Sheng
On Gamma-Ray Bursts
title On Gamma-Ray Bursts
title_full On Gamma-Ray Bursts
title_fullStr On Gamma-Ray Bursts
title_full_unstemmed On Gamma-Ray Bursts
title_short On Gamma-Ray Bursts
title_sort on gamma-ray bursts
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1142/9789812834300_0019
http://cds.cern.ch/record/1100141
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