首页> 外文期刊>The Astrophysical journal >THE STELLAR AGES AND MASSES OF SHORT GAMMA-RAY BURST HOST GALAXIES: INVESTIGATING THE PROGENITOR DELAY TIME DISTRIBUTION AND THE ROLE OF MASS AND STAR FORMATION IN THE SHORT GAMMA-RAY BURST RATE
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THE STELLAR AGES AND MASSES OF SHORT GAMMA-RAY BURST HOST GALAXIES: INVESTIGATING THE PROGENITOR DELAY TIME DISTRIBUTION AND THE ROLE OF MASS AND STAR FORMATION IN THE SHORT GAMMA-RAY BURST RATE

机译:短伽玛射线暴寄宿星系的星体和质量:研究祖先延迟时间分布以及质量和恒星形成在短伽玛射线暴率中的作用

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We present multi-band optical and near-infrared observations of 19 short γ-ray burst (GRB) host galaxies, aimed at measuring their stellar masses and population ages. The goals of this study are to evaluate whether short GRBs track the stellar mass distribution of galaxies, to investigate the progenitor delay time distribution, and to explore any connection between long and short GRB progenitors. Using single stellar population models we infer masses of log(M */M ☉) ≈ 8.8-11.6, with a median of log(M */M ☉) ≈ 10.1, and population ages of τ* ≈ 0.03-4.4 Gyr with a median of τ* ≈ 0.3 Gyr. We further infer maximal masses of log(M */M ☉) ≈ 9.7-11.9 by assuming stellar population ages equal to the age of the universe at each host's redshift. Comparing the distribution of stellar masses to the general galaxy mass function, we find that short GRBs track the cosmic stellar mass distribution only if the late-type hosts generally have maximal masses. However, there is an apparent dearth of early-type hosts compared to the equal contribution of early- and late-type galaxies to the cosmic stellar mass budget. Similarly, the short GRB rate per unit old stellar mass appears to be elevated in the late-type hosts. These results suggest that stellar mass may not be the sole parameter controlling the short GRB rate, and raise the possibility of a two-component model with both mass and star formation playing a role (reminiscent of the case for Type Ia supernovae). If short GRBs in late-type galaxies indeed track the star formation activity, the resulting typical delay time is ~0.2 Gyr, while those in early-type hosts have a typical delay of ~3 Gyr. Using the same stellar population models, we fit the broadband photometry for 22 long GRB host galaxies in a similar redshift range and find that they have significantly lower masses and younger population ages, with log(M */M ☉) ≈ 9.1 and τ* ≈ 0.06 Gyr, respectively; their maximal masses are similarly lower, log(M */M ☉) ≈ 9.6, and as expected do not track the galaxy mass function. Most importantly, the two GRB host populations remain distinct even if we consider only the star-forming hosts of short GRBs, supporting our previous findings (based on star formation rates and metallicities) that the progenitors of long and short GRBs in late-type galaxies are distinct. Given the much younger stellar populations of long GRB hosts (and hence of long GRB progenitors), and the substantial differences in host properties, we caution against the use of Type I and II designations for GRBs since this may erroneously imply that all GRBs which track star formation activity share the same massive star progenitors.
机译:我们提出了19个短γ射线爆发(GRB)宿主星系的多波段光学和近红外观测,旨在测量它们的恒星质量和人口年龄。本研究的目的是评估短GRB是否跟踪星系的恒星质量分布,调查祖先的延迟时间分布,并探索长和短GRB祖先之间的任何联系。使用单个恒星种群模型,我们推断log(M * / M☉)≈8.8-11.6的质量,log(M * / M☉)≈10.1的中位数,以及τ*≈0.03-4.4 Gyr的种群年龄τ*≈0.3 Gyr的中位数。通过假设恒星的种群年龄等于每个主机的红移的宇宙年龄,我们进一步推导log(M * / M☉)≈9.7-11.9的最大质量。将恒星质量的分布与一般星系质量函数进行比较,我们发现,仅当晚型宿主通常具有最大质量时,短GRB才会跟踪宇宙恒星质量分布。但是,与早期和晚期星系对宇宙恒星质量预算的同等贡献相比,早期类型的宿主显然缺乏。同样,在晚期型宿主中,单位老恒星质量的短GRB率似乎有所提高。这些结果表明,恒星质量可能不是控制短期GRB速率的唯一参数,并且增加了质量和恒星形成都起作用的两组分模型的可能性(让人联想到Ia型超新星的情况)。如果后期类型星系中的短GRB确实跟踪了恒星形成活动,则产生的典型延迟时间约为0.2 Gyr,而早期类型宿主的GRB具有典型的〜3 Gyr延迟。使用相同的恒星种群模型,我们在相似的红移范围内对22个长GRB宿主星系进行了宽带光度法拟合,发现它们的质量显着降低且人口年龄更年轻,log(M * / M☉)≈9.1和τ* ≈0.06 Gyr;它们的最大质量类似地较低,log(M * / M☉)≈9.6,并且不像预期的那样跟踪星系质量函数。最重要的是,即使我们仅考虑短GRB的恒星形成宿主,这两个GRB宿主群体仍然保持不同,这支持了我们先前的发现(基于恒星形成率和金属性),即晚型星系中长GRB和短GRB的祖先截然不同。鉴于长GRB宿主的年轻恒星种群(以及长GRB的祖先),以及宿主特性的实质差异,我们告诫不要将I和II型名称用于GRB,因为这可能会错误地暗示所有追踪的GRB恒星形成活动共享相同的巨大恒星祖先。

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