Rotating Stars in Relativity
Author:
Publisher
Springer Science and Business Media LLC
Subject
Physics and Astronomy (miscellaneous)
Link
http://link.springer.com/content/pdf/10.12942/lrr-2003-3
Reference342 articles.
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3. Abramowicz, M.A., Kluźniak, W., and Lasota, J.-P., “The Centrifugal Force Reversal and X-ray Bursts”, Astron. Astrophys., 374, L16–L18, (2001). For a related online version see: M.A. Abramowicz, et al., “The Centrifugal Force Reversal and X-ray Bursts”, (May, 2001), [Online Los Alamos Archive Preprint]: cited on 23 April 2002, http://www.arxiv.org/abs/astro-ph/0105324. 2.10.2
4. Alcubierre, M., Brügmann, B., Dramlitsch, T., Font, J.A., Papadopoulos, P., Seidel, E., Stergioulas, N., and Takahashi, R., “Towards a stable numerical evolution of strongly gravitating systems in general relativity: The conformal treatments”, Phys. Rev. D, 62, 044034–1–044034–16, (2000). For a related online version see: M. Alcubierre, et al., “Towards a Stable Numerical Evolution of Strongly Gravitating Systems in General Relativity: The Conformal Treatments”, (March, 2000), [Online Los Alamos Archive Preprint]: cited on 5 June 2002, http://www.arxiv.org/abs/gr-qc/0003071. 4
5. Amsterdamski, P., Bulik, T., Gondek-Rosińska, D., and Kluźniak, W., “Low-mass Quark Stars as Maclaurin Spheroids”, Astron. Astrophys., 381, L21–L24, (2002). For a related online version see: P. Amsterdamski, et al., “Low-mass Quark Stars as Maclaurin Spheroids”, (December, 2000), [Online Los Alamos Archive Preprint]: cited on 23 April 2002, http://www.arxiv.org/abs/astro-ph/0012547. 2.10.1
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