论文标题

在低加速度下径向加速关系的斜​​率上的观察性约束

Observational constraints on the slope of the radial acceleration relation at low accelerations

论文作者

Oman, Kyle A., Brouwer, Margot M., Ludlow, Aaron D., Navarro, Julio F.

论文摘要

径向加速度关系(RAR)局部将从系统的动力学推断为其Baryonic物质分布所隐含的加速度的“观察到的”加速度。 Galaxy旋转曲线所追踪的关系是一对一的,其散射量很小,这意味着可以简单地通过测量其密度曲线来预测系统的动力学,例如。恒星光或气体排放线。将与加速度的关系扩展到通常由实际上可观察到的运动示踪剂探测到的加速度之下的关系是具有挑战性的,尤其是一旦考虑到虚弱的发射baryons(例如假定的热热层间层间介质),就变得很重要。我们表明,在低通电状态下,(倒置的)RAR预测了具有“观察到的“加速度”的系统的封闭式质量质量的下降,比$ g _ {\ rm obs} \ propto r^{ - 1} $陡峭的系统较陡的系统(相对于密度的propiles prop prop)(对应于陡峭的insother-other-other-other-$ $ $ $)。如果RAR符合自然法律,那么这种加速度也将不存在。我们将这一论点应用于旋转曲线衍生的RAR推断到低加速度的兼容性,以及来自Galaxy-galaxy弱透镜,矮球星系恒星运动学和外部乳米〜的数据,完全独立于直接测量的baryonics saspressions的无关。在所有情况下,我们都会发现数据弱地倾向于突破陡峭的低速斜率。对外乳〜的测量和建模的改进以及弱透镜的改进似乎是对RAR低速行为的更强大约束的最有希望的途径。

The radial acceleration relation (RAR) locally relates the `observed' acceleration inferred from the dynamics of a system to the acceleration implied by its baryonic matter distribution. The relation as traced by galaxy rotation curves is one-to-one with remarkably little scatter, implying that the dynamics of a system can be predicted simply by measuring its density profile as traced by e.g. stellar light or gas emission lines. Extending the relation to accelerations below those usually probed by practically observable kinematic tracers is challenging, especially once accounting for faintly emitting baryons, such as the putative warm-hot intergalactic medium, becomes important. We show that in the low-acceleration regime, the (inverted) RAR predicts an unphysical, declining enclosed baryonic mass profile for systems with `observed' acceleration profiles steeper than $g_{\rm obs}\propto r^{-1}$ (corresponding to density profiles steeper than isothermal - $ρ(r)\propto r^{-2}$). If the RAR is tantamount to a natural law, such acceleration profiles cannot exist. We apply this argument to test the compatibility of an extrapolation of the rotation curve-derived RAR to low accelerations with data from galaxy-galaxy weak lensing, dwarf spheroidal galaxy stellar kinematic, and outer Milky~Way dynamical measurements, fully independent of the uncertainties inherent in direct measurements of the baryonic matter distribution. In all cases we find that the data weakly favour a break to a steeper low-acceleration slope. Improvements in measurements and modelling of the outer Milky~Way, and weak lensing, seem like the most promising path toward stronger constraints on the low-acceleration behaviour of the RAR.

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