English

Huygens' envelope principle in Finsler spaces and analogue gravity

General Relativity and Quantum Cosmology 2019-04-04 v2 Mathematical Physics Differential Geometry math.MP

Abstract

We extend to the nn-dimensional case a recent theorem establishing the validity of the Huygens' envelope principle for wavefronts in Finsler spaces. Our results have direct applications in analogue gravity models, for which the Fermat's principle of least time naturally gives origin to an underlying Finslerian geometry. For the sake of illustration, we consider two explicit examples motivated by recent experimental results: surface waves in flumes and vortices. For both examples, we have distinctive directional spacetime structures, namely horizons and ergospheres, respectively. We show that both structures are associated with certain directional divergences in the underlying Finslerian (Randers) geometry. Our results show that Finsler geometry may provide a fresh view on the causal structure of spacetime, not only in analogue models but also for General Relativity.

Keywords

Cite

@article{arxiv.1901.01176,
  title  = {Huygens' envelope principle in Finsler spaces and analogue gravity},
  author = {Hengameh R. Dehkordi and Alberto Saa},
  journal= {arXiv preprint arXiv:1901.01176},
  year   = {2019}
}

Comments

17 pages, 3 figures. Final version accepted for publication in CQG. Animations in Supplementary Material available at http://vigo.ime.unicamp.br/Huygens/