English

Canonical General Relativity on a Null Surface with Coordinate and Gauge Fixing

General Relativity and Quantum Cosmology 2010-11-01 v2

Abstract

We use the canonical formalism developed together with David Robinson to st= udy the Einstein equations on a null surface. Coordinate and gauge conditions = are introduced to fix the triad and the coordinates on the null surface. Toget= her with the previously found constraints, these form a sufficient number of second class constraints so that the phase space is reduced to one pair of canonically conjugate variables: \Ac2\and\Sc2\Ac_2\and\Sc^2. The formalism is related to both the Bondi-Sachs and the Newman-Penrose methods of studying the gravitational field at null infinity. Asymptotic solutions in the vicinity of null infinity which exclude logarithmic behavior require the connection to fall off like 1/r31/r^3 after the Minkowski limit. This, of course, gives the previous results of Bondi-Sachs and Newman-Penrose. Introducing terms which fall off more slowly leads to logarithmic behavior which leaves null infinity intact, allows for meaningful gravitational radiation, but the peeling theorem does not extend to Ψ1\Psi_1 in the terminology of Newman-Penrose. The conclusions are in agreement with those of Chrusciel, MacCallum, and Singleton. This work was begun as a preliminary study of a reduced phase space for quantization of general relativity.

Keywords

Cite

@article{arxiv.gr-qc/9504043,
  title  = {Canonical General Relativity on a Null Surface with Coordinate and Gauge Fixing},
  author = {J. N. Goldberg and C. Soteriou},
  journal= {arXiv preprint arXiv:gr-qc/9504043},
  year   = {2010}
}

Comments

magnification set; pagination improved; 20 pages, plain tex

R2 v1 2026-07-22T12:50:07.486Z