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The Black Hole-Neutron Star Binary Merger in Full General Relativity [[electronic resource] ] : Dependence on Neutron Star Equations of State / / by Koutarou Kyutoku



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Autore: Kyutoku Koutarou Visualizza persona
Titolo: The Black Hole-Neutron Star Binary Merger in Full General Relativity [[electronic resource] ] : Dependence on Neutron Star Equations of State / / by Koutarou Kyutoku Visualizza cluster
Pubblicazione: Tokyo : , : Springer Japan : , : Imprint : Springer, , 2013
Edizione: 1st ed. 2013.
Descrizione fisica: 1 online resource (185 p.)
Disciplina: 530.11
Soggetto topico: Astronomy
Astrophysics
Mathematical physics
Physics
Astronomy, Astrophysics and Cosmology
Mathematical Applications in the Physical Sciences
Numerical and Computational Physics, Simulation
Note generali: Description based upon print version of record.
Nota di bibliografia: Includes bibliographical references.
Nota di contenuto: Equations of State of Neutron Star Matter -- Computing Initial Conditions -- Methods of Simulations -- Diagnostics for Numerical Simulations -- The Merger of Nonspinning Black Hole-Neutron Star Binaries -- The Merger of Spinning Black Hole-Neutron Star Binaries.
Sommario/riassunto: This thesis presents a systematic study of the orbital evolution, gravitational wave radiation, and merger remnant of the black hole–neutron star binary merger in full general relativity for the first time. Numerical-relativity simulations are performed using an adaptive mesh refinement code, SimulAtor for Compact objects in Relativistic Astrophysics (SACRA), which adopts a wide variety of zero-temperature equations of state for the neutron star matter.   Gravitational waves provide us with quantitative information on the neutron star compactness and equation of state via the cutoff frequency in the spectra, if tidal disruption of the neutron star occurs before the binary merges. The cutoff frequency will be observed by next-generation laser interferometric ground-based gravitational wave detectors, such as Advanced LIGO, Advanced VIRGO, and KAGRA.   The author has also determined that the mass of remnant disks are sufficient for the remnant black hole accretion disk to become a progenitor of short-hard gamma ray bursts accompanied by tidal disruptions and suggests that overspinning black holes may not be formed after the merger of even an extremely spinning black hole and an irrotational neutron star.
Titolo autorizzato: The Black Hole-Neutron Star Binary Merger in Full General Relativity  Visualizza cluster
ISBN: 1-299-19800-7
4-431-54201-9
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910437975303321
Lo trovi qui: Univ. Federico II
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Serie: Springer Theses, Recognizing Outstanding Ph.D. Research, . 2190-5053