English

Groups of Worldview Transformations Implied by Isotropy of Space

Mathematical Physics 2020-07-29 v1 Logic Metric Geometry math.MP

Abstract

Given any Euclidean ordered field, QQ, and any 'reasonable' group, GG, of (1+3)-dimensional spacetime symmetries, we show how to construct a model MGM_{G} of kinematics for which the set WW of worldview transformations between inertial observers satisfies W=GW=G. This holds in particular for all relevant subgroups of GalGal, cPoicPoi, and cEuclcEucl (the groups of Galilean, Poincar\'e and Euclidean transformations, respectively, where cQc\in Q is a model-specific parameter orresponding to the speed of light in the case of Poincar\'e transformations). In doing so, by an elementary geometrical proof, we demonstrate our main contribution: spatial isotropy is enough to entail that the set WW of worldview transformations satisfies either WGalW\subseteq Gal, WcPoiW\subseteq cPoi, or WcEuclW\subseteq cEucl for some c>0c>0. So assuming spatial isotropy is enough to prove that there are only 3 possible cases: either the world is classical (the worldview transformations between inertial observers are Galilean transformations); the world is relativistic (the worldview transformations are Poincar\'e transformations); or the world is Euclidean (which gives a nonstandard kinematical interpretation to Euclidean geometry). This result considerably extends previous results in this field, which assume a priori the (strictly stronger) special principle of relativity, while also restricting the choice of QQ to the field of reals. As part of this work, we also prove the rather surprising result that, for any GG containing translations and rotations fixing the time-axis tt, the requirement that GG be a subgroup of one of the groups GalGal, cPoicPoi or cEuclcEucl is logically equivalent to the somewhat simpler requirement that, for all gGg\in G: g[t]g[t] is a line, and if g[t]=tg[t]=t then gg is a trivial transformation (i.e. gg is a linear transformation that preserves Euclidean length and fixes the time-axis setwise).

Keywords

Cite

@article{arxiv.2007.14261,
  title  = {Groups of Worldview Transformations Implied by Isotropy of Space},
  author = {Judit X. Madarász and Mike Stannett and Gergely Székely},
  journal= {arXiv preprint arXiv:2007.14261},
  year   = {2020}
}

Comments

51 pages, 20 figures

R2 v1 2026-06-23T17:28:00.468Z