Stellar dynamical modeling - Accuracy of 3D density estimation for edge-on axisymmetric galaxies

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Abstract

From Rybicki's analysis using the Fourier slice theorem, mathematically it is possible to reproduce uniquely an edge-on axisymmetric galaxy's 3D light distribution from its 2D surface brightness. Utilizing galaxies from a cosmological simulation, we examine the ability of Syer and Tremaine's made-to-measure method and Schwarzschild's method for stellar dynamical modeling to do so for edge-on oblate axisymmetric galaxies. Overall, we find that the methods do not accurately recover the 3D distributions, with the made-to-measure method producing more accurate estimates than Schwarzschild's method. Our results have implications broader than just luminosity density, and affect other luminosity-weighted distributions within galaxies, for example, age and metallicity.

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Long, R. J., Lu, S. D., & Xu, D. D. (2021). Stellar dynamical modeling - Accuracy of 3D density estimation for edge-on axisymmetric galaxies. Research in Astronomy and Astrophysics, 21(6). https://doi.org/10.1088/1674-4527/21/6/152

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