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Counter-rotating relativistic static thin disks

  • Autores: Omar A. Espitia, Guillermo A. Gonzàlez
  • Localización: Integración: Temas de matemáticas, ISSN 0120-419X, Vol. 19, Nº. 1, 2001, págs. 1-12
  • Idioma: inglés
  • Enlaces
  • Resumen
    • A detailed study of the Counter-Rotating Model (CRM) for generic fi-nite static axially symmetric thin disks with nonzero radial pressure is presented. We find a general constraint over the counter-rotating tan-gential velocities needed to cast the surface energy-momentum tensor of the disk as the superposition of two counter-rotating perfect fluids. We also found expressions for the energy density and pressure of the counter-rotating fluids. Then we shown that, in general, it is not possible to take the two counter-rotating fluids as circulating along geodesics neither take the two counter-rotating tangential velocities as equal and opposite. An specific example is studied where we obtain some CRM with well defined counter-rotating tangential velocities that are agree with the strong en­ergy condition, but there are regions of the disk with negative energy density, in violation of the weak energy condition.

  • Referencias bibliográficas
    • Citas 1] W. A. Bonnor and A. Sackfield, Comm. Math. Phys. 8, 338 (1968).
    • [2] T. Morgan and L. Morgan, Phys. Rev. 183, 1097 (1969).
    • [3] L. Morgan and T. Morgan, Phys. Rev. D2, 2756 (1970).
    • [4] A. Chamorro, R. Gregory and J. M. Stewart, Proc. R. Soc. Lond. A 413, 251(1987).
    • [5] G. A. Gonz ́alez and P. S. Letelier. Class. Quantum. Grav. 16, 479 (1999).
    • [6] P. S. Letelier. Phys. Rev. D 60, 104042 (1999).
    • [7] J. Katz, J. Bi ̆c ́ak and D. Lynden-Bell, Class. Quantum Grav. 16, 4023 (1999).[8] D. Lynden-Bell and S. Pineault, Mon. Not. R. Astron....
    • [9] P.S. Letelier and S. R. Oliveira, J. Math. Phys. 28, 165 (1987).[10] J. P. S. Lemos, Class. Quantum Grav. 6, 1219 (1989).
    • [11] J. P. S. Lemos and P. S. Letelier, Class. Quantum Grav. 10, L75 (1993).
    • [12] J. Bi ̆c ́ak, D. Lynden-Bell and J. Katz, Phys. Rev. D47, 4334 (1993).
    • [13] J. Bi ̆c ́ak, D. Lynden-Bell and C. Pichon, Mon. Not. R. Astron. Soc. 265, 126(1993).[14] J. Bi ̆c ́ak and T. Ledvinka. Phys. Rev. Lett....
    • [15] J. P. S. Lemos and P. S. Letelier, Phys. Rev D49, 5135 (1994).[16] J. P. S. Lemos and P. S. Letelier, Int. J. Mod. Phys. D5, 53 (1996).[17]...
    • [18] G. A. Gonz ́alez and P. S. Letelier. Phys. Rev. D 62, 064025 (2000).[19] V. C. Rubin, J. A. Graham and J. D. P Kenney. Ap. J. 394, L9-L12,...
    • [21] H. Weyl. Ann. Phys. 54, 117 (1917).
    • [22] H. Weyl. Ann. Phys. 59, 185 (1919).
    • [23] P. S. Letelier. Phys. Rev. D 22, 807 (1980).
    • [24] S. Chandrasekar,The Mathematical Theory of Black Holes. (Oxford UniversityPress, 1992).
    • [25] H. P. Robertson and T. W. Noonan.Relativity and Cosmology. (Saunders,1969).[26] S. W. Hawking and G. F. R. Ellis.The Large Scale Structure...

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