English

General relativity, Lauricella's hypergeometric function $F_D$ and the theory of braids

General Relativity and Quantum Cosmology 2007-09-24 v1

Abstract

The exact (closed form) solutions of the equations of motion in the theory of general relativity that describe motion of test particle and photon in Kerr and Kerr-(anti) de Sitter spacetimes all involve the multivariable hypergeometric function of Lauricella FDF_D: Kraniotis [Class. Quantum Grav. {\bf 21} 2004, 4743; Class. Quantum Grav. {\bf 22} 2005, 4391; Class. Quantum Grav. {\bf 24} 2007, 1775]. The domain of variables Dn{\cal D}_n of the corresponding function depends on the first integrals of motion associated with the isometries of the Kerr-(anti) de Sitter metric and Carter's constant QQ as well as on the cosmological constant Λ\Lambda and the Kerr (rotation) parameter. In this work we discuss the topological properties of the domain Dn{\cal D}_n and in particular its fundamental connection with the theory of braids. An intrinsic relationship of general relativity with the pure braids is established.

Keywords

Cite

@article{arxiv.0709.3391,
  title  = {General relativity, Lauricella's hypergeometric function $F_D$ and the theory of braids},
  author = {G. V. Kraniotis},
  journal= {arXiv preprint arXiv:0709.3391},
  year   = {2007}
}

Comments

16 pages, LaTeX