论文标题

NGC1818揭示了年轻的麦哲伦云集群中扩展主序列的起源

NGC1818 unveils the origin of the extended main-sequence turn-off in young Magellanic Clouds clusters

论文作者

Cordoni, Giacomo, Milone, Antonino P., Marino, Anna F., Cignoni, Michele, Lagioia, Edoardo P., Tailo, Marco, Carlos, Marília, Dondoglio, Emanuele, Jang, Sohee, Mohandasan, Anjana, Legnardi, Maria V.

论文摘要

年轻明星簇的起源是现代恒星天体物理学的主要挑战。虽然恒星旋转部分解释了沿主要序列折断观察到的颜色扩散,即恒星在其核心中耗尽氢的耗尽后离开主要序列,以及在其颜色降低的恒星图中的多个主要序列,比大约2 gyr的恒星系统图,似乎仍然需要年龄差异才能实现观察性约束。 Here we introduce an alternative approach that exploits the main-sequence turn-on, i.e. the point alongside the colour-magnitude diagram where pre-main-sequence stars join the main-sequence, to disentangle between the effects of stellar rotation and age to assess the presence, or lack thereof, of prolonged star formation in the approximately 40-Myr-old cluster NGC1818.我们的结果为快速恒星形成提供了证据,该恒星形成限制在8 MYR之内,因此排除了年龄差异,是导致延长的主要序列关闭的原因,并在探索年轻群集中出色的人群的过程中带来了替代观察观点的道路。

The origin of young star clusters represents a major challenge for modern stellar astrophysics. While stellar rotation partially explains the colour spread observed along main-sequence turn-offs, i.e. where stars leave the main-sequence after the exhaustion of hydrogen in their core, and the multiple main sequences in the colour-magnitude diagrams of stellar systems younger than approximately 2 Gyr, it appears that an age difference may still be required to fulfill the observational constraints. Here we introduce an alternative approach that exploits the main-sequence turn-on, i.e. the point alongside the colour-magnitude diagram where pre-main-sequence stars join the main-sequence, to disentangle between the effects of stellar rotation and age to assess the presence, or lack thereof, of prolonged star formation in the approximately 40-Myr-old cluster NGC1818. Our results provide evidence for a fast star formation, confined within 8 Myr, thus excluding age differences as responsible for the extended main-sequence turn-offs, and leading the way to alternative observational perspectives in the exploration of stellar populations in young clusters.

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