论文标题

探索IA型超新星的金属依赖性速率及其对星系形成的影响

Exploring metallicity-dependent rates of Type Ia supernovae and their impact on galaxy formation

论文作者

Gandhi, Pratik. J., Wetzel, Andrew, Hopkins, Philip F., Shappee, Benjamin J., Wheeler, Coral, Faucher-Giguère, Claude-André

论文摘要

IA型超新星在星系中的恒星反馈和元素富集中起关键作用。最近的瞬态调查,例如对超新星(ASAS-SN)的全套自动化调查和黑暗能源调查(DES)发现,低质量星系中Z〜0时的特定IA速率可能高约15-50倍。独立的银河系观测表明,在金属性较低的金属性下,太阳能型恒星的近二元分数更高。在这些观察结果的激励下,我们使用Fire-2宇宙缩放模拟探索不同的IA速率模型的影响,包括金属性依赖性,对一系列恒星质量的星系:10^7 msun-10^{11^{11} msun。首先,我们针对观察结果基准了模拟的恒星形成历史(SFHS)。我们表明,假设SFHS和恒星质量函数在确定观测值和非金属性非依赖性的IA速率模型之间的张力程度中起着重要作用,并且可能导致ASAS-SN和DES观察值与彼此的一致性更为一致,而不是天真地出现。 IA速率随着金属度的降低(AS 〜z^{ - 0.5}到Z^{ - 1})而增加的模型为观察值提供了明显更好的一致性。令人鼓舞的是,这些IA率的提高(低质量星系中> 10倍)不会显着影响星系恒星质量和形态:有效半径,轴比和V/Sigma在很大程度上不受影响,除了我们最极端的速率模型。我们探索对[Fe/H]和[alpha/fe]富集的影响:金属依赖性的IA速率模型可以改善与低质量星系中观察到的恒星质量金属关系的一致性。我们的结果表明,广泛的金属依赖性IA模型对于银河系形成是可行的,并激发了该领域的未来工作。

Type Ia supernovae play a critical role in stellar feedback and elemental enrichment in galaxies. Recent transient surveys like the All-Sky Automated Survey for Supernova (ASAS-SN) and the Dark Energy Survey (DES) find that the specific Ia rate at z ~ 0 may be ~ 15-50 times higher in lower-mass galaxies than at Milky Way-mass. Independently, Milky Way observations show that the close-binary fraction of solar-type stars is higher at lower metallicity. Motivated by these observations, we use the FIRE-2 cosmological zoom-in simulations to explore the impact of varying Ia rate models, including metallicity dependence, on galaxies across a range of stellar masses: 10^7 Msun - 10^{11} Msun. First, we benchmark our simulated star-formation histories (SFHs) against observations. We show that assumed SFHs and stellar mass functions play a major role in determining the degree of tension between observations and metallicity-independent Ia rate models, and potentially cause ASAS-SN and DES observations to be much more consistent with each other than might naively appear. Models in which the Ia rate increases with decreasing metallicity (as ~ Z^{-0.5} to Z^{-1}) provide significantly better agreement with observations. Encouragingly, these increases in Ia rate (> 10 times in low-mass galaxies) do not significantly impact galaxy stellar masses and morphologies: effective radii, axis ratios, and v/sigma remain largely unaffected except for our most extreme rate models. We explore implications for both [Fe/H] and [alpha/Fe] enrichment: metallicity-dependent Ia rate models can improve agreement with observed stellar mass-metallicity relations in low-mass galaxies. Our results demonstrate that a wide range of metallicity-dependent Ia models are viable for galaxy formation and motivate future work in this area.

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