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Gravitational collapse and spacetime singularities / Pankaj S. Joshi.

By: Contributor(s): Series: Cambridge monographs on mathematical physicsPublisher: Cambridge : Cambridge University Press, 2007Description: 1 online resource (x, 273 pages) : digital, PDF file(s)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780511536274 (ebook)
Other title:
  • Gravitational Collapse & Spacetime Singularities
Subject(s): Genre/Form: Additional physical formats: Print version: : No titleDDC classification:
  • 531.14 22
LOC classification:
  • QB843.B55 .J68 2007
Online resources:
Contents:
The spacetime manifold -- Spherical collapse -- Cosmic censorship -- Final fate of a massive star.
Summary: Physical phenomena in astrophysics and cosmology involve gravitational collapse in a fundamental way. The final fate of a massive star when it collapses under its own gravity at the end of its life cycle is one of the most important questions in gravitation theory and relativistic astrophysics, and is the foundation of black hole physics. General relativity predicts that continual gravitational collapse gives rise to a space-time singularity. Quantum gravity may take over in such regimes to resolve the classical space-time singularity. This book, first published in 2007, investigates these issues, and shows how the visible ultra-dense regions arise naturally and generically as an outcome of dynamical gravitational collapse. It will be of interest to graduate students and academic researchers in gravitation physics, fundamental physics, astrophysics, and cosmology. It includes a detailed review of research into gravitational collapse, and several examples of collapse models are investigated in detail.
Item type: eBooks
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Title from publisher's bibliographic system (viewed on 05 Oct 2015).

The spacetime manifold -- Spherical collapse -- Cosmic censorship -- Final fate of a massive star.

Physical phenomena in astrophysics and cosmology involve gravitational collapse in a fundamental way. The final fate of a massive star when it collapses under its own gravity at the end of its life cycle is one of the most important questions in gravitation theory and relativistic astrophysics, and is the foundation of black hole physics. General relativity predicts that continual gravitational collapse gives rise to a space-time singularity. Quantum gravity may take over in such regimes to resolve the classical space-time singularity. This book, first published in 2007, investigates these issues, and shows how the visible ultra-dense regions arise naturally and generically as an outcome of dynamical gravitational collapse. It will be of interest to graduate students and academic researchers in gravitation physics, fundamental physics, astrophysics, and cosmology. It includes a detailed review of research into gravitational collapse, and several examples of collapse models are investigated in detail.

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