作者
Jonathan B Foster, Michiel Cottaar, Kevin R Covey, Héctor G Arce, Michael R Meyer, David L Nidever, Keivan G Stassun, Jonathan C Tan, S Drew Chojnowski, Nicola da Rio, Kevin M Flaherty, Luisa Rebull, Peter M Frinchaboy, Steven R Majewski, Michael Skrutskie, John C Wilson, Gail Zasowski
发表日期
2015/1/22
期刊
The Astrophysical Journal
卷号
799
期号
2
页码范围
136
出版商
IOP Publishing
简介
The initial velocity dispersion of newborn stars is a major unconstrained aspect of star formation theory. Using near-infrared spectra obtained with the APOGEE spectrograph, we show that the velocity dispersion of young (1–2 Myr) stars in NGC 1333 is 0.92±0.12 km s− 1 after correcting for measurement uncertainties and the effect of binaries. This velocity dispersion is consistent with the virial velocity of the region and the diffuse gas velocity dispersion, but significantly larger than the velocity dispersion of the dense, star-forming cores, which have a subvirial velocity dispersion of 0.5 km s− 1. Since the NGC 1333 cluster is dynamically young and deeply embedded, this measurement provides a strong constraint on the initial velocity dispersion of newly formed stars. We propose that the difference in velocity dispersion between stars and dense cores may be due to the influence of a 70 μG magnetic field acting on the …
引用总数
201520162017201820192020202120222023202411121710125711137