Export citation

Export citation

Choose format for download:

Download Citation
  • Access by Xinjiang University

Pulses of Gravitational Radiation of a Particle Falling Radially into a Schwarzschild Black Hole

Marc Davis, Remo Ruffini, and Jayme Tiomno*

  • Joseph Henry Laboratories, Princeton University, Princeton, New Jersey 08540

  • *At the Institute for Advanced Study, Princeton, N. J., when this work was initiated.

Phys. Rev. D 5, 2932 – Published 15 June, 1972

DOI: https://doi.org/10.1103/PhysRevD.5.2932

Abstract

Using the Regge-Wheeler-Zerilli formalism of fully relativistic linear perturbations in the Schwarzschild metric, we analyze the radiation of a particle of mass m falling into a Schwarzschild black hole of mass Mm. The detailed shape of the energy pulse and of the tide-producing components of the Riemann tensor at large distances from the source are given, as well as the angular distribution of the radiation. Finally, analysis of the energy going down the hole indicates the existence of a divergence; implications of this divergence as a testing ground of the approximation used are examined.

References (8)

  1. F. Zerilli, Phys. Rev. D 2, 2141 (1970)
  2. M. Davis and R. Ruffini, Lett. Nuovo Cimento 2, 1165 (1971)
  3. M. Davis, R. Ruffini, W. Press, and R. Price, Phys. Rev. Letters 27, 1466 (1971)
  4. G. Gibbons and S. Hawking, Phys. Rev. D 4, 2191 (1971)
  5. W. Press, Astrophys. J. Letters 170, L105 (1971)
  6. T. Regge and J. A. Wheeler, Phys. Rev. 108, 1063 (1957)
  7. J. Weber, General Relativity and Gravitational Waves (Interscience, New York, 1961)
  8. R. Ruffini and J. A. Wheeler, in Proceedings of the Cortona Symposium on Weak Interactions, edited by L. Radicati (Accademia Nazionale die Lincei, Rome, 1971)

Outline

Information

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation