High-Speed Cylindrical Collapse of Perfect Fluid(Astrophysics and Relativity)
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概要
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The gravitational collapse of a cylindrically distributed perfect fluid is studied. We assume that the collapsing speed of the fluid is very large and investigate such a situation using recently proposed high-speed approximation scheme. We show that if the value of the pressure divided by the energy density is bounded below by some positive value, the high-speed collapse is necessarily decelerated by pressure repulsion so significantly that this approximation scheme becomes inapplicable. However, even in the case of a mono-atomic ideal gas, which is a typical example of the bounded case, an arbitrarily large tidal force for freely falling observers can be realized before the high-speed approximation breaks down if the initial collapsing velocity is set to a very large value. By contrast, in case that the equation of state is sufficiently soft, we find that the high-speed collapse is maintained until a spacetime singularity forms.
- 理論物理学刊行会の論文
- 2005-01-25
著者
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NAKAO Ken-ichi
Department of Physics, Graduate School of Science, Osaka City University
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Nakano K
Department Of Physics Osaka City University
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MORISAWA Yoshiyuki
Yukawa Institute for Theoretical Physics, Kyoto University
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Nakao Ken-ichi
Department Of Mathematics And Physics Graduate School Of Science Osaka City University
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Morisawa Yoshiyuki
Yukawa Institute For Theoretical Physics Kyoto University
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