论文标题

附近星系的体积恒星形成法 - 扩展到矮星系和低密度区域

The volumetric star formation law for nearby galaxies -- Extension to dwarf galaxies and low-density regions

论文作者

Bacchini, Cecilia, Fraternali, Filippo, Pezzulli, Gabriele, Marasco, Antonino

论文摘要

在过去的几十年中,在寻找可以在恒星形成的星系中以亚吉洛巴杆菌量表测量的气体和恒星形成速率(SFR)密度无关紧要的恒星形成定律已付出了很多努力。然而,使用观察到的表面密度推断恒星形成定律的常规方法揭示了一个重大且众所周知的问题,因为这种关系对于星系的高密度区域是有效的,但在低密度和高度主导的环境中分解。最近,对于附近的圆盘星系样品和银河系,获得了总气体(HI+H $ _2 $)与星形形成率(SFR)体积密度之间的经验相关性。该体积恒星形成(VSF)定律是单个幂律,没有断裂,相对于基于表面密度的恒星形成定律,固有的散射较小。在这项工作中,我们在矮星系方面探讨了VSF法律,以测试其在HI主导,低密度和低金属环境中的有效性。此外,我们在螺旋星系的郊区评估了这种关系,该螺旋星系是低密度和高为主导的区域,类似于矮星系。值得注意的是,我们发现VSF法律,即$ρ_\ mathrm {sfr} \ proptoρ_\ mathrm {gas}^α$带有$α\ 2 $,对这两个制度都是有效的。该结果表明,VSF法律对广泛的气体($ \ 3 $ dex)和SFR($ \ 6 $ dex)的体积密度不合格,这是与最小的内在散射的经验关系,并且可能比表面恒星形成最基本。

In the last decades, much effort has been put into finding the star formation law which could unequivocally link the gas and the star formation rate (SFR) densities measured on sub-kiloparsec scale in star-forming galaxies. The conventional approach of using the observed surface densities to infer star formation laws has however revealed a major and well-known issue, as such relations are valid for the high-density regions of galaxies but break down in low-density and HI-dominated environments. Recently, an empirical correlation between the total gas (HI+H$_2$) and the star formation rate (SFR) volume densities was obtained for a sample of nearby disc galaxies and for the Milky Way. This volumetric star formation (VSF) law is a single power-law with no break and a smaller intrinsic scatter with respect to the star formation laws based on the surface density. In this work, we explore the VSF law in the regime of dwarf galaxies in order to test its validity in HI-dominated, low-density, and low-metallicity environments. In addition, we assess this relation in the outskirts of spiral galaxies, which are low-density and HI-dominated regions similar to dwarf galaxies. Remarkably, we find the VSF law, namely $ρ_\mathrm{SFR} \propto ρ_\mathrm{gas}^α$ with $α\approx 2$, is valid for both these regimes. This result indicates that the VSF law, which holds unbroken for a wide range of gas ($\approx 3$ dex) and SFR ($\approx 6$ dex) volume densities, is the empirical relation with the smallest intrinsic scatter and is likely more fundamental than surface-based star formation laws.

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