English

Oscillating about coplanarity in the 4 body problem

Dynamical Systems 2019-10-02 v1

Abstract

For the Newtonian 4-body problem in space we prove that any zero angular momentum bounded solution suffers infinitely many coplanar instants, that is, times at which all 4 bodies lie in the same plane. This result generalizes a known result for collinear instants ("syzygies") in the zero angular momentum planar 3-body problem, and extends to the d+1d+1 body problem in dd-space. The proof, for d=3d=3, starts by identifying the center-of-mass zero configuration space with real 3×33 \times 3 matrices, the coplanar configurations with matrices whose determinant is zero, and the mass metric with the Frobenius (standard Euclidean) norm. Let SS denote the signed distance from a matrix to the hypersurface of matrices with determinant zero. The proof hinges on establishing a harmonic oscillator type ODE for SS along solutions. Bounds on inter-body distances then yield an explicit lower bound ω\omega for the frequency of this oscillator, guaranteeing a degeneration within every time interval of length π/ω\pi/\omega. The non-negativity of the curvature of oriented shape space (the quotient of configuration space by the rotation group) plays a crucial role in the proof.

Keywords

Cite

@article{arxiv.1811.00608,
  title  = {Oscillating about coplanarity in the 4 body problem},
  author = {Richard Montgomery},
  journal= {arXiv preprint arXiv:1811.00608},
  year   = {2019}
}

Comments

26 pages, 5 figures

R2 v1 2026-06-23T05:01:20.479Z