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THE IMPACT OF MOLECULAR GAS ON MASS MODELS OF NEARBY GALAXIES

机译:分子气体对邻近星系质量模型的影响

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We present CO velocity fields and rotation curves for a sample of nearby galaxies, based on data from HERACLES. We combine our data with THINGS, SINGS, and KINGFISH results to provide a comprehensive sample of mass models of disk galaxies inclusive of molecular gas. We compare the kinematics of the molecular (CO from HERACLES) and atomic (H i from THINGS) gas distributions to determine the extent to which CO may be used to probe the dynamics in the inner part of galaxies. In general, we find good agreement between the CO and H i kinematics, with small differences in the inner part of some galaxies. We add the contribution of the molecular gas to the mass models in our galaxies by using two different conversion factors αCO to convert CO luminosity to molecular gas mass surface density—the constant Milky Way value and the radially varying profiles determined in recent work based on THINGS, HERACLES, and KINGFISH data. We study the relative effect that the addition of the molecular gas has on the halo rotation curves for Navarro–Frenk–White and the observationally motivated pseudo-isothermal halos. The contribution of the molecular gas varies for galaxies in our sample—for those galaxies where there is a substantial molecular gas content, using different values of αCO can result in significant differences to the relative contribution of the molecular gas and?hence?the shape of the dark matter halo rotation curves in the central regions of galaxies.
机译:基于HERACLES的数据,我们给出了附近星系样本的CO速度场和旋转曲线。我们将数据与THINGS,SINGS和KINGFISH结果相结合,以提供包括分子气体在内的盘状星系质量模型的全面样本。我们比较了分子(HERACLES的CO)和原子(THINGS的H i)的运动学,以确定可用来探测星系内部动力学的CO的程度。通常,我们发现CO运动和H i运动之间的一致性好,在某些星系的内部差异很小。我们通过使用两个不同的转换因子αCO将CO的光度转换为分子气体质量表面密度(恒定的银河值和最近基于THINGS确定的径向变化的轮廓),将分子气体对银河系质量模型的贡献增加了,HERACLES和KINGFISH数据。我们研究了分子气体的添加对Navarro–Frenk–White和观察到的拟等温晕的晕圈旋转曲线的相对影响。对于我们样本中的星系,分子气体的贡献各不相同-对于那些存在大量分子气体的星系,使用不同的αCO值可能会导致分子气体的相对贡献显着不同,从而改变分子的形状。星系中心区域的暗物质晕旋转曲线。

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