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PENELLOPE: the ESO Data Legacy Program to Complement the Hubble UV Legacy Library of Young Stars (ULLYSES)

Astronomy and Astrophysics(2021)

European Southern Observ | INAF Osservatorio Astrofis Catania | NASA | Eotvos Lorand Res Network ELKH | Peking Univ | Univ Michigan | UNAM | INAF Osservatorio Astron Roma | INAF Osservatorio Astron Capodimonte | Space Telescope Sci Inst | NSFs NOIRLab | Univ Dundee | Dublin Inst Adv Studies | INAF Osservatorio Astrofis Torino | INAF Osservatorio Astrofis Arcetri | Texas State Univ | Univ Grenoble Alpes | PSL Univ | Thuringer Landessternwarte | Ludwig Maximillian Univ | Boston Univ | Chinese Acad Sci | Univ Colorado | Univ Porto | Sterrenkundig Inst Anton Pannekoek | Crimean Astrophys Observ | MIT | CALTECH | Univ Hawaii Manoa | Univ Milan | Ctr Astrobiol CSIC INTA | Univ Leeds | INAF Osservatorio Astron Padova | Leiden Univ | Hamburger Sternwarte | Eberhard Karls Univ Tubingen | Armagh Observ & Planetarium | SUNY Stony Brook

Cited 38|Views25
Abstract
The evolution of young stars and disks is driven by the interplay of several processes, notably the accretion and ejection of material. These processes, critical to correctly describe the conditions of planet formation, are best probed spectroscopically. Between 2020 and 2022, about 500orbits of the Hubble Space Telescope (HST) are being devoted in to the ULLYSES public survey of about 70 low-mass (M⋆ ≤ 2 M⊙) young (age < 10 Myr) stars at UV wavelengths. Here, we present the PENELLOPE Large Program carried out with the ESO Very Large Telescope (VLT) with the aim of acquiring, contemporaneously to the HST, optical ESPRESSO/UVES high-resolution spectra for the purpose of investigating the kinematics of the emitting gas, along with UV-to-NIR X-shooter medium-resolution flux-calibrated spectra to provide the fundamental parameters that HST data alone cannot provide, such as extinction and stellar properties. The data obtained by PENELLOPE have no proprietary time and the fully reduced spectra are being made available to the whole community. Here, we describe the data and the first scientific analysis of the accretion properties for the sample of 13 targets located in the Orion OB1 association and in the σ-Orionis cluster, observed in November–December 2020. We find that the accretion rates are in line with those observed previously in similarly young star-forming regions, with a variability on a timescale of days (≲3). The comparison of the fits to the continuum excess emission obtained with a slab model on the X-shooter spectra and the HST/STIS spectra shows a shortcoming in the X-shooter estimates of ≲10%, which is well within the assumed uncertainty. Its origin can be either due to an erroneous UV extinction curve or to the simplicity of the modeling and, thus, this question will form the basis of the investigation undertaken over the course of the PENELLOPE program. The combined ULLYSES and PENELLOPE data will be key in attaining a better understanding of the accretion and ejection mechanisms in young stars.
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Young Stellar Objects
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要点】:本文介绍了PENELLOPE计划,一个使用ESO Very Large Telescope (VLT)获取年轻恒星的高分辨率光谱的计划,以研究喷射物质的动理学,并结合HST的ULLYSES调查数据,提供对年轻恒星吸积和喷射机制的更深入了解。

方法】:研究者使用ESPRESSO/UVES高分辨率光谱和X-shooter中等分辨率校正光谱同时获取了HST数据的补充信息,包括气体发射物的动力学以及无法通过HST数据获得的恒星属性等基本参数。

实验】:在2020年11月至12月期间,对位于Orion OB1协会和-Orionis集群的13个目标进行了观测,得出了与先前在类似年轻星形成区域观察到的吸积率一致的结果,并发现吸积率存在日时间尺度上的变异。通过比较X-shooter光谱和HST/STIS光谱上连续过量发射的拟合结果,发现X-shooter估计的吸积率存在不超过10%的不足,这将在PENELLOPE计划中进行进一步调查。联合ULLYSES和PENELLOPE数据对于更好地理解年轻恒星的吸积和喷射机制至关重要。