The effect of non-sphericity on mass and anisotropy measurements in dSph galaxies with Schwarzschild method
arXiv:1708.09425 · doi:10.1093/mnras/sty436
Abstract
In our previous work we confirmed the reliability of the spherically symmetric Schwarzschild orbit-superposition method to recover the mass and velocity anisotropy profiles of spherical dwarf galaxies. Here we investigate the effect of its application to intrinsically non-spherical objects. For this purpose we use a model of a dwarf spheroidal galaxy formed in a numerical simulation of a major merger of two disky dwarfs. The shape of the stellar component of the merger remnant is axisymmetric and prolate which allows us to identify and measure the bias caused by observing the spheroidal galaxy along different directions, especially the longest and shortest principal axis. The modelling is based on mock data generated from the remnant that are observationally available for dwarfs: projected positions and line-of-sight velocities of the stars. In order to obtain a reliable tool while keeping the number of parameters low we parametrize the total mass distribution as a radius-dependent mass-to-light ratio with just two free parameters we aim to constrain. Our study shows that if the total density profile is known, the true, radially increasing anisotropy profile can be well recovered for the observations along the longest axis whereas the data along the shortest axis lead to the inference an incorrect, isotropic model. On the other hand, if the density profile is derived from the method as well, the anisotropy is always underestimated but the total mass profile is well recovered for the data along the shortest axis whereas for the longest axis the mass content is overestimated.
14 pages, 12 figures, accepted for publication in MNRAS
References in corpus (3)
Cited by in corpus (11)
- Dark matter heats up in dwarf galaxies
- The case for a cold dark matter cusp in Draco
- Too Big To Fail in Light of Gaia
- To beta or not to beta: can higher-order Jeans analysis break the mass-anisotropy degeneracy in simulated dwarfs?
- Schwarzschild dynamical model of the Fornax dwarf spheroidal galaxy
- Orbit-superposition models of discrete, incomplete stellar kinematics: application to the Galactic centre
- Non-sphericity of ultralight axion dark matter haloes in the Galactic dwarf spheroidal galaxies
- Axisymmetric Schwarzschild models of an isothermal axisymmetric mock dwarf spheroidal galaxy
- Multiple stellar populations in Schwarzschild modeling and the application to the Fornax dwarf
- Dark matter distribution and dynamics of dwarf spheroidal galaxies
- Broken Expectations: The Effects of Modelling Assumptions on the Inferred Dark Matter Distribution in the Milky Way's Satellites