论文标题
揭示了赫尔米溪流的祖细胞的过去演变
Unveiling the past evolution of the progenitor of the Helmi streams
论文作者
论文摘要
我们旨在确定通过分析恒星形成历史(SFHS)的分析来表征Helmi流祖细胞过去演变的独特特征。从5d {\ it Gaia} EDR3数据集中,我们提取了以Helmi流,银河系(Galactic(Galactic and Thin)碟片为主导的恒星样品,以及局部逆行光环。我们通过识别伪卡车速度空间中的区域(通过将视线速度设置为零而获得),其中属于这些成分的恒星(在具有6D相位空间信息的样品中鉴定出来)主要是发现的。我们利用了更新的绝对颜色磁性图(CMD)拟合方法来对比这些样品的SFH,以揭示破坏的积聚系统过去演变的不同签名:Helmi流。为此,特别注意{\ it gaia}完整性效应和观察性误差的正确表征。我们进一步研究了替代样品选择,以提高5D Helmi流目录的纯度。我们发现,赫尔米溪流的祖细胞经历了早期的恒星形成,比银河系的halo(10--11〜Gyr ogo)持续了更长的时间(直到7--9 〜Gyr)。结果,其恒星质量的一半是$ \ sim $ 〜0.7〜Gyr后来。 Helmi Stream祖细胞$ \ SIM $ 〜8〜Gyr ogo的恒星形成的淬灭表明,这一次是由银河系吸收的,这是根据流的动力学的先前估计。
We aim to determine unique features that characterise the past evolution of the progenitor of the Helmi streams through the analysis of star formation histories (SFHs). From the 5D {\it Gaia} EDR3 dataset, we extracted local samples of stars dominated by the Helmi streams, the Galactic (thick and thin) disc, and the local retrograde halo. We did this by identifying regions in a pseudo-Cartesian velocity space (obtained by setting line-of-sight velocities to zero), where stars belonging to these components, as identified in samples with 6D phase-space information, are predominantly found. We made use of an updated absolute colour-magnitude diagram (CMD) fitting methodology to contrast the SFHs of these samples to unveil distinct signatures of the past evolution of a disrupted accreted system: the Helmi streams. To this end, special attention was given to the correct characterisation of {\it Gaia} completeness effects and observational errors on the CMD. We further investigated alternative sample selections to improve the purity of our 5D Helmi stream catalogues. We find that the progenitor of the Helmi streams experienced an early star formation that was sustained for longer (until 7--9~Gyr ago) than for the Milky Way halo (10--11~Gyr ago). As a consequence, half of its stellar mass was in place $\sim$~0.7~Gyr later. The quenching of star formation in the Helmi stream progenitor $\sim$~8~Gyr ago suggests it was accreted by the Milky Way around this time, in concert with previous estimates based on the dynamics of the streams.