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An historical account of the reasoning that led to the discovery of the Kerr and Kerr-Schild metrics in 1963-1964, and their physical interpretation as rotating black holes, is presented.
Pirani, F.A.E. (1957). Invariant formulation of gravitational radiation theory, Phys. Rev
1957
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Kerr, R.P. (1958). The Lorentz-covariant Approximation Method in General Relativity I, Il Nuovo Cim
1958
Earlier work this paper cites.
Kerr, R.P. (1960). On the Quasi-static Approximation Method in General Relativity, Il Nuovo Cim
1960
Earlier work this paper cites.
Penrose, R. (1960). A spinor approach to general relativity, Ann. Phys. (NY)
1960
Earlier work this paper cites.
Goldberg, J.N. and Kerr, R.P. (1961). Some applications of the infinitesimal-holonomy group to the Petrov classification of Einstein spaces J. Math. Phys
1961
Earlier work this paper cites.
Kerr, R.P. and Goldberg, J.N. (1961). Einstein spaces with four-parameter holonomy groups, J. Math. Phys
1961
Earlier work this paper cites.
Sachs, R.K. (1961). Gravitational waves in general relativity. VI. Waves in asymptotically flat space–time, Proc. Roy. Soc. Lond
1961
Earlier work this paper cites.
Bondi, H., M.G.J. van der Burg and A.W.K. Metzner (1962). Gravitational waves in general relativity. 7. Waves from axisymmetric isolated systems. Proc. Roy. Soc. Lond. A
1962
Earlier work this paper cites.
Goldberg, J.N. and Sachs, R.K. (1962) A theorem on Petrov Types, Acta Phys. Polon., Suppl
1962
Earlier work this paper cites.
Robinson, I. and Trautman, A. (1962). Some spherical gravitational waves in general relativity, Proc. Roy. Soc. Lond
1962
Earlier work this paper cites.
Robinson, I. and Trautman, A. (1964). Exact Degenerate Solutions of Einstein’s Equations, in Proceedings on Theory of Gravitation, Conference in Warszawa and Jablonna, 1962
1962
Cited alongside, same era.
Sachs, R.K. (1962). Gravitational waves in general relativity. VIII. Waves in asymptotically flat space–time, Proc. Roy. Soc. Lond
1962
Cited alongside, same era.
Kerr, R.P. (1963). Gravitational field of a spinning mass as an example of algebraically special metrics, Phys. Rev. Lett
1963
Cited alongside, same era.
Newman, E.T., Tambourino, L.A., and Unti, T. (1963). Empty-space generalization of the Schwarzschild metric. J. Math. Phys
1963
Cited alongside, same era.
Janis, A.I., and Newman, E.T. (1965) Structure of Gravitational Sources. J. Math. Phys
1965
Cited alongside, same era.
Debney, G.C., Kerr, R.P. and Schild, A. (1969). Solutions of the Einstein and Einstein-Maxwell equations, J. Math. Phys
1969
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Kerr, R.P. and Debney, G.C. (1970). Einstein spaces with symmetry groups, J. Math. Phys
1970
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Carter, B. (1971). Axisymmetric Black Hole Has Only Two Degrees of Freedom, Phys. Rev. Lett
1971
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Hawking, S.W., (1972). Black holes in general relativity, Commun. Math. Phys
1972
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Papapetrou, A. (1974) Lectures on General Relativity
1974
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Robinson, D.C. (1975). Uniqueness of the Kerr Black Hole, Phys. Rev. Lett
1975
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Kerr, R.P., (1965). Gravitational collapse and rotation, Quasi-stellar Sources and Gravitational Collapse, including the Proceedings of the First Texas Symposium on Relativistic Astrophysics
1965
Cited alongside, same era.
Newman, E.T., and Janis, A.I. (1965) Note on the Kerr Spinning-Particle metric. J. Math. Phys
1965
Cited alongside, same era.
Newman, E.T., Couch, E., Chinnapared, K., Exton, A., Prakash, A., and Torrence, R. (1965) Metric of a Rotating, Charged Mass. J. Math. Phys
1965
Cited alongside, same era.
Boyer, R.H. and Lindquist, R.W. (1967). Maximal Analytic Extension of the Kerr Metric, J. Math. Phys
1967
Cited alongside, same era.
Carter, B. (1968). Global Structure of the Kerr Family of Gravitational Fields, Phys. Rev
1968
Cited alongside, same era.
Kerr, R.P. and Schild, A. (1965a). A new class of vacuum solutions of the Einstein field equations, Atti del Congregno Sulla Relativita Generale: Galileo Centenario
Cited in the paper.
Kerr, R.P. and Schild, A. (1965b). Some algebraically degenerate solutions of Einstein’s gravitational field equations, Proc. Sym. in Applied Math
Cited in the paper.
Kerr, R.P. and Wilson, W.B. (1978). Singularities in the Kerr–Schild Metrics, Gen. Rel. Grav
1978
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Petrov, A.Z. (1954). The classification of spaces defining gravitational fields, Scientific Proceedings of Kazan State University
2000
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Stephani, H.,Kramer, D., MacCallum, M., Hoenselaers, C. and Herlt, E. (2003). Exact Solutions to Einstein’s Field Equations
2003
Later among the works it cites.