4.3 Article

Static, spherically symmetric solutions with a scalar field in Rastall gravity

期刊

GENERAL RELATIVITY AND GRAVITATION
卷 48, 期 12, 页码 -

出版社

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s10714-016-2152-0

关键词

Gravitation; Black Holes; Wormholes; Exact solutions; Alternative theories of gravity

资金

  1. FAPES (Brazil)
  2. CAPES (Brazil)
  3. CNPq (Brazil)
  4. MEPhI Academic Excellence Project [02.a03.21.0005]
  5. RUDN-University program [5-100]

向作者/读者索取更多资源

Rastall's theory belongs to the class of non-conservative theories of gravity. In vacuum, the only non-trivial static, spherically symmetric solution is the Schwarz-schild one, except for a very special case. When a canonical scalar field is coupled to the gravity sector in this theory, new exact solutions appear for some values of the Rastall parameter a. Some of these solutions describe the same space-time geometry as the recently found solutions in the k-essence theory with a power function for the kinetic term of the scalar field. There is a large class of solutions (in particular, those describing wormholes and regular black holes) whose geometry coincides with that of solutions of GR coupled to scalar fields with nontrivial self-interaction potentials; the form of these potentials, however, depends on the Rastall parameter a. We also note that all solutions of GR with a zero trace of the energy-momentum tensor, including black-hole and wormhole ones, may be re-interpreted as solutions of Rastall's theory.

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