Relativistic Gravitational Collapse of a Cylindrical Shell of Dust. II : Settling Down Boundary Condition(Astrophysics and Cosmology)
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概要
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We numerically study the dynamics of an imploding hollow cylinder composed of dust. Since there is no cylindrical black hole in 4-dimensional spacetime with physically reasonable energy conditions, a collapsed dust cylinder involves a naked singularity accompanied by its causal future, or a fatal singularity that terminates the history of the whole universe. In a previous paper, the present authors have shown that if the dust is assumed to be composed of collisionless particles such that these particles go through the symmetry axis of the cylinder, then the scalar polynomial singularity formed on the symmetry axis is so weak that almost all the geodesics are complete, and thus effectively no singularity forms by the collapse of a hollow dust cylinder. By contrast, in this paper, we assume that all the collapsed dust settles down on the symmetry axis by changing its equation of state. Obtained solutions are the straightforward extension of Morgan's null dust solution, in which no gravitational radiation is emitted. However, in the present case with timelike dust, an infinite amount of C-energy initially stored in the system is released through gravitational radiation. We also show that the gravitational waves asymptotically behave in a self-similar manner.
- 2009-08-25
著者
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NAKAO Ken-ichi
Department of Physics, Graduate School of Science, Osaka City University
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Harada Tomohiro
Department of Cardiovascular Medicine, University of Tokyo
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Harada Tomohiro
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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KURITA Yasunari
Kanagawa Institute of Technology
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MORISAWA Yoshiyuki
Faculty of Liberal Arts and Science, Osaka University of Economics and Law
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Harada Tomohiro
Department Of Physics Rikkyo University
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Nakao Ken-ichi
Department Of Mathematics And Physics Graduate School Of Science Osaka City University
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KURITA Yasunari
Department of Mathematics and Physics, Graduate School of Science, Osaka City University
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Morisawa Yoshiyuki
Faculty Of Liberal Arts And Science Osaka University Of Economics And Law
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Harada Tomohiro
Department Of Applied Analysis And Complex Dynamical Systems Graduate School Of Informatics Kyoto Un
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Nakao Ken‐ichi
Department Of Mathematics And Physics Graduate School Of Science Osaka City University
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Kurita Yasunari
Kanagawa Inst. Of Technol. Atsugi Jpn
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HARADA Tomohiro
Department of Physics, Rikkyo University
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HARADA Tomohiro
Department of Physics, Rikkyo University:Department of Physics, Kyoto University
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MORISAWA Yoshiyuki
Faculty of Liberal Arts and Sciences, Osaka University of Economics and Law
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NAKAO Ken-ichi
Department of Mathematics and Physics, Graduate School of Science, Osaka City University
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