TIMES II: Investigating the Relation Between Turbulence and Star-forming Environments in Molecular Clouds
arXiv:2107.13323
Abstract
We investigate the effect of star formation on turbulence in the Orion A and Ophiuchus clouds using principal component analysis (PCA). We measure the properties of turbulence by applying PCA on the spectral maps in CO, CO, HCO 10, and CS 21. First, the scaling relations derived from PCA of the CO maps show that the velocity difference () for a given spatial scale () is the highest in the integral shaped filament (ISF) and L1688, where the most active star formation occurs in the two clouds. The increases with the number density and total bolometric luminosity of the protostars in the sub-regions. Second, in the ISF and L1688 regions, the of CO, HCO, and CS are generally higher than that of CO, which implies that the dense gas is more turbulent than the diffuse gas in the star-forming regions; stars form in dense gas, and dynamical activities associated with star formation, such as jets and outflows, can provide energy into the surrounding gas to enhance turbulent motions.
29 pages, 17 figures, 7 tables, accepted for publication in ApJ