论文标题

尘埃排放与附近星系M33的恒星人口年龄的关系

Dust Emission as a Function of Stellar Population Age in the Nearby Galaxy M33

论文作者

Mallory, Kate, Calzetti, Daniela, Lin, Zesen

论文摘要

8微米处的灰尘发射已被广泛校准,以指示星系中星系和〜KPC大小区域的当前恒星形成速率。然而,星系中8微米发射与年轻恒星种群之间的确切联系仍然受到质疑,因为较旧的田间恒星也可以随机加热灰尘。为了调查此链接,我们将Spitzer空间望远镜的中红外图像与本地组Galaxy M33的已发表的Star Cluster候选人目录相结合。 M33足够接近,因此Spitzer的8个微米图像可以解决恒星形成的单个区域。恒星簇代表了几乎是时代的恒星种群,与恒星的复杂混合物相比,建模明显容易得多。我们发现每单位恒星质量的8微米光度降低,这是恒星簇的年龄的函数,其大散射与尘埃吸收的恒星光的分数一致。减少和散射都基于更遥远的星系确认了发现,并通过简单模型很好地描述了年轻恒星种群的尘埃发射。我们得出的结论是,8微米的尘埃排放敏感地取决于恒星种群的年龄,至少在这里分析的年龄段,〜400 Myr。这种依赖性使8微米发射作为恒星形成速率指标的使用复杂化,至少对于小银河系和单个恒星形成区域。通过利用Spitzer的遗产,这项调查为与James Webb太空望远镜的未来探索铺平了道路。

Dust emission at 8 micron has been extensively calibrated as an indicator of current star formation rate for galaxies and ~kpc-size regions within galaxies. Yet, the exact link between the 8 micron emission and the young stellar populations in galaxies is still under question, as dust grains can be stochastically heated also by older field stars. In order to investigate this link, we have combined mid-infrared images from the Spitzer Space Telescope with a published star cluster candidates catalog for the Local Group galaxy M33. M33 is sufficiently close that the Spitzer's 8 micron images resolve individual regions of star formation. Star clusters represent almost-single-age stellar populations, which are significantly easier to model than more complex mixtures of stars. We find a decrease in the 8 micron luminosity per unit stellar mass as a function of age of the star clusters, with a large scatter that is consistent with varying fractions of stellar light absorbed by dust. The decrease and scatter both confirm findings based on more distant galaxies and are well described by simple models for the dust emission of a young stellar population. We conclude that the dust emission at 8 micron depends sensitively on the age of the stellar population, out to at least the oldest age analyzed here, ~400 Myr. This dependence complicates the use of the 8 micron emission as a star formation rate indicator, at least for small galactic regions and individual star forming regions. By leveraging the Spitzer legacy, this investigation paves the way for future explorations with the James Webb Space Telescope.

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