Recovering the pattern speeds of edge-on barred galaxies via an orbit-superposition method
Abstract
We developed an orbit-superposition method for edge-on barred galaxies and evaluated its capability to recover the bar pattern speed . We selected three simulated galaxies (Au-18, Au-23, and Au-28) with known pattern speeds from the Auriga simulations and created MUSE-like mock data sets with edge-on views (inclination angles ) and various bar azimuthal angles . For mock data sets with side-on bars (), the model-recovered pattern speeds encompass the true pattern speeds within the model uncertainties ( confidence levels, ) for 10 of 12 cases. The average model uncertainty within the confidence levels is equal to . For mock data sets with end-on bars (), the model uncertainties of depend significantly on the bar azimuthal angles , with the uncertainties of cases with approaching . However, by imposing a stricter constraint on the bar morphology (), the average uncertainties are reduced to , and still encompass within the model uncertainties for three of four cases. For all the models that we create in this paper, the () confidence levels of the model-recovered pattern speeds always cover the true values .
Keywords
Cite
@article{arxiv.2505.02917,
title = {Recovering the pattern speeds of edge-on barred galaxies via an orbit-superposition method},
author = {Yunpeng Jin and Ling Zhu and Behzad Tahmasebzadeh and Shude Mao and Glenn van de Ven and Rui Guo and Runsheng Cai},
journal= {arXiv preprint arXiv:2505.02917},
year = {2025}
}
Comments
19 pages, 15 figures