论文标题

圆盘星系的最大知情贝叶斯建模

Maximally informed Bayesian modelling of disc galaxies

论文作者

Rigamonti, Fabio, Dotti, Massimo, Covino, Stefano, Haardt, Francesco, Landoni, Marco, Del Pozzo, Walter, Lupi, Alessandro, Zibetti, Stefano

论文摘要

在星系形成和进化论的框架中,解剖星系的基础结构至关重要。虽然通常将经典的凸起+圆盘星系盘分解为授予,但这很少是在完全利用具有整体场单元的光谱研究引起的数据丰富的全部基础上牢固地建立的。在这项工作中,我们描述了圆盘星系全球结构的完全贝叶斯估计方法,该方法利用了光度,运动学和质量与光比数据的财富,并且可以将其视为迈向机器学习方法的第一步,在处理较大的星系样品时肯定需要。我们的是一种新颖的混合作用,用于解决银河参数估计问题,既不是纯粹的光度法也不是基于轨道的。植根于嵌套采样器,我们的代码可作为在线存储库公开使用,可以对解剖过程中多个组件的需求进行统计评估。作为第一个案例研究,GPU优化的代码被应用于S0 Galaxy NGC-7683,发现在该星系中,伪块(可能是类似条形结构的残余)确实存在于系统中心。然后,根据公开可用的基于轨道的代码炸药对这些结果进行测试,从而找到了实质性的共识。

Dissecting the underlying structure of galaxies is of main importance in the framework of galaxy formation and evolution theories. While a classical bulge+disc decomposition of disc galaxies is usually taken as granted, this is only rarely solidly founded upon the full exploitation of the richness of data arising from spectroscopic studies with integral field units. In this work we describe a fully Bayesian estimation method of the global structure of disc galaxies which makes use of the wealth of photometric, kinematic, and mass-to-light ratio data, and that can be seen as a first step towards a machine-learning approach, certainly needed when dealing with larger samples of galaxies. Ours is a novel, hybrid line of action in tackling the problem of galactic parameter estimation, neither purely photometric nor orbit-based. Being rooted on a nested sampler, our code, which is available publicly as an online repository, allows for a statistical assessment of the need for multiple components in the dissecting process. As a first case-study the GPU-optimized code is applied to the S0 galaxy NGC-7683, finding that in this galaxy a pseudo-bulge, possibly the remnant of a bar-like structure, does exist in the center of the system. These results are then tested against the publicly available, orbit-based code DYNAMITE, finding substantial agreement.

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