English

Stream-orbit misalignment I: The dangers of orbit-fitting

Astrophysics of Galaxies 2014-04-24 v1

Abstract

Tidal streams don't, in general, delineate orbits. A stream-orbit misalignment is expected to lead to biases when using orbit-fitting to constrain models for the Galactic potential. In this first of two papers we discuss the expected magnitude of the misalignment and the resulting dangers of using orbit-fitting algorithms to constrain the potential. We summarize data for known streams which should prove useful for constraining the Galactic potential, and compute their actions in a realistic Galactic potential. We go on to discuss the formation of tidal streams in angle-action space, and explain why, in general, streams do not delineate orbits. The magnitude of the stream-orbit misalignment is quantified for a logarithmic potential and a multi-component Galactic potential. Specifically, we focus on the expected misalignment for the known streams. By introducing a two-parameter family of realistic Galactic potentials we demonstrate that assuming these streams delineate orbits can lead to order one errors in the halo flattening and halo-to-disc force ratio at the Sun. We present a discussion of the dependence of these results on the progenitor mass, and demonstrate that the misalignment is mass-independent for the range of masses of observed streams. Hence, orbit-fitting does not yield better constraints on the potential if one uses narrower, lower-mass streams.

Keywords

Cite

@article{arxiv.1305.1935,
  title  = {Stream-orbit misalignment I: The dangers of orbit-fitting},
  author = {Jason L. Sanders and James Binney},
  journal= {arXiv preprint arXiv:1305.1935},
  year   = {2014}
}

Comments

13 pages, 7 figures, accepted for publication in MNRAS

R2 v1 2026-06-22T00:13:42.574Z