论文标题

Schwarzschild建模中的多个恒星种群以及对Fornax Dwarf的应用

Multiple stellar populations in Schwarzschild modeling and the application to the Fornax dwarf

论文作者

Kowalczyk, Klaudia, Lokas, Ewa L.

论文摘要

矮球(DSPH)星系被认为是强烈的暗物质,因此被认为是研究暗物质分布和测试结构形成理论的理想对象。他们拥有解决的多个恒星种群,为建模提供了新的可能性。这些对象动态建模的有前途的工具是Schwarzschild轨道叠加方法。在这项工作中,我们扩展了以前的计划实施,以包括一个以上的恒星和更一般的质量比率功能。我们测试了在宇宙学环境中形成的几乎球形的,无气的星系上的改进方法。我们通过金属性对恒星分为两个种群的恒星的BIN速度矩进行建模,并证明,尽管采样误差较大,但增加的约束数量增加导致在恢复的密度和速度各向异性各异概况上显着更紧密的置信区。然后,我们将该方法应用于Fornax DSPH星系,并将恒星类似地分为两个种群。与我们较早的工作相比,我们发现随着半径和更严格的约束,各向异性参数略有增加而不是减小。我们还能够分别推断出每个恒星种群的各向异性,并发现它们有显着差异。

Dwarf spheroidal (dSph) galaxies are believed to be strongly dark matter dominated and thus are considered perfect objects to study dark matter distribution and test theories of structure formation. They possess resolved, multiple stellar populations that offer new possibilities for modeling. A promising tool for the dynamical modeling of these objects is the Schwarzschild orbit superposition method. In this work we extend our previous implementation of the scheme to include more than one population of stars and a more general form of the mass-to-light ratio function. We tested the improved approach on a nearly spherical, gas-free galaxy formed in the cosmological context from the Illustris simulation. We modeled the binned velocity moments for stars split into two populations by metallicity and demonstrate that in spite of larger sampling errors the increased number of constraints leads to significantly tighter confidence regions on the recovered density and velocity anisotropy profiles. We then applied the method to the Fornax dSph galaxy with stars similarly divided into two populations. In comparison with our earlier work, we find the anisotropy parameter to be slightly increasing, rather than decreasing, with radius and more strongly constrained. We are also able to infer anisotropy for each stellar population separately and find them to be significantly different.

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