论文标题

奥德修斯调查。动机和第一个结果:CVSO的积聚,弹射和磁盘辐射109

The ODYSSEUS Survey. Motivation and First Results: Accretion, Ejection, and Disk Irradiation of CVSO 109

论文作者

Espaillat, C. C., Herczeg, G. J., Thanathibodee, T., Pittman, C., Calvet, N., Arulanantham, N., France, K., Serna, Javier, Hernandez, J., Kospal, A., Walter, F. M., Frasca, A., Fischer, W. J., Johns-Krull, C. M., Schneider, P. C., Robinson, C., Edwards, Suzan, Abraham, P., Fang, Min, Erkal, J., Manara, C. F., Alcala, J. M., Alecian, E., Alexander, R. D., Alonso-Santiago, J., Antoniucci, Simone, Ardila, David R., Banzatti, Andrea, Benisty, M., Bergin, Edwin A., Biazzo, Katia, Briceno, Cesar, Campbell-White, Justyn, Cleeves, L. Ilsedore, Coffey, Deirdre, Eisloffel, Jochen, Facchini, Stefano, Fedele, D., Fiorellino, Eleonora, Froebrich, Dirk, Gangi, Manuele, Giannini, Teresa, Grankin, K., Gunther, Hans Moritz, Guo, Zhen, Hartmann, Lee, Hillenbrand, Lynne A., Hinton, P. C., Kastner, Joel H., Koen, Chris, Mauco, K., Mendigutia, I., Nisini, B., Panwar, Neelam, Principe, D. A., Robberto, Massimo, Sicilia-Aguilar, A., Valenti, Jeff A., Wendeborn, J., Williams, Jonathan P., Xu, Ziyan, Yadav, R. K.

论文摘要

Hubble紫外线遗产图书馆是年轻恒星作为基本标准(ULLYSES)董事的副局长的低质量前序列明星计划,再加上Alma和JWST的即将到来的数据,将为我们的理解彻底改变我们对年轻恒星及其原始磁盘之间关系的理解。对磁盘进化和行星形成物理的全面评估需要了解质量积聚,质量流出和磁盘结构之间的复杂关系。在这里,我们描述了年轻恒星周围的流出和磁盘:探索Ullyses Spectra(Odysseus)调查的协同作用,并在Orion OB1B中呈现经典T Tauri Star CVSO 109的初步结果,以表明该调查将导致的科学。奥德修斯将分析ullys频谱数据库,确保采用统一和系统的方法,以衡量吸积流如何取决于吸收率和磁性结构,(2)确定启动风和喷气机的位置以及质量损失速率与积分相比,以及(3)建立FUV辐射对内部范围的影响。奥德修斯还将在X射线,光学,NIR和毫米波长上获取并提供同期观察,以增强Ullyses数据的影响。我们的目标是提供一个一致的框架,以准确测量原球门磁盘中质量积聚的水平和演变,内盘质量损失的特性和幅度以及确定电离水平并驱动磁盘化学的UV辐射场的影响。

The Hubble UV Legacy Library of Young Stars as Essential Standards (ULLYSES) Director's Discretionary Program of low-mass pre-main-sequence stars, coupled with forthcoming data from ALMA and JWST, will provide the foundation to revolutionize our understanding of the relationship between young stars and their protoplanetary disks. A comprehensive evaluation of the physics of disk evolution and planet formation requires understanding the intricate relationships between mass accretion, mass outflow, and disk structure. Here we describe the Outflows and Disks around Young Stars: Synergies for the Exploration of ULLYSES Spectra (ODYSSEUS) Survey and present initial results of the classical T Tauri Star CVSO 109 in Orion OB1b as a demonstration of the science that will result from the survey. ODYSSEUS will analyze the ULLYSES spectral database, ensuring a uniform and systematic approach in order to (1) measure how the accretion flow depends on the accretion rate and magnetic structures, (2) determine where winds and jets are launched and how mass-loss rates compare with accretion, and (3) establish the influence of FUV radiation on the chemistry of the warm inner regions of planet-forming disks. ODYSSEUS will also acquire and provide contemporaneous observations at X-ray, optical, NIR, and millimeter wavelengths to enhance the impact of the ULLYSES data. Our goal is to provide a consistent framework to accurately measure the level and evolution of mass accretion in protoplanetary disks, the properties and magnitudes of inner-disk mass loss, and the influence of UV radiation fields that determine ionization levels and drive disk chemistry.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源