The Core Mass Function Across Galactic Environments. III. Massive Protoclusters
arXiv:2104.08861 · doi:10.3847/1538-4357/ac062d
Abstract
The stellar initial mass function (IMF) is fundamental for many areas of astrophysics, but its origin remains poorly understood. It may be inherited from the core mass function (CMF) or arise as a result of more chaotic, competitive accretion. Dense, gravitationally bound cores are seen in molecular clouds and some observations have suggested that the CMF is similar in shape to the IMF, though translated to higher masses by a factor of . Here we measure the CMF in 28 dense clumps within 3.5 kpc that are likely to be central regions of massive protoclusters, observed via dust continuum emission by the ALMAGAL project. We identify 222 cores using the dendrogram algorithm with masses ranging from 0.04 to . We apply completeness corrections for flux and number recovery, estimated from core insertion and recovery experiments. At higher masses, the final derived CMF is well described by a single power law of the form with . However, we find evidence of a break in this power-law behavior between and , which is, to our knowledge, the first time such a break has been found in distant ( kpc) regions by ALMA. We compare this massive protocluster CMF with those derived using the same methods in the G286 protocluster and a sample of Infrared Dark Clouds. The massive protocluster CMF is significantly different, i.e., containing more massive cores, which is a potential indication of the role of environment on the CMF and IMF.
Accepted for publication in ApJ, 25 pages, 10 figures, 4 tables
References in corpus (10)
- Power-law distributions in empirical data
- Structural Analysis of Molecular Clouds: Dendrograms
- Properties of Hi-GAL clumps in the inner Galaxy]{The Hi-GAL compact source catalogue. I. The physical properties of the clumps in the inner Galaxy ()
- Fragmentation of Molecular Clumps and Formation of Protocluster
- The Impact of Feedback During Massive Star Formation by Core Accretion
- Dense core properties in the Infrared Dark cloud G14.225-0.506 revealed by ALMA
- High Mass Star Formation. III. The Functional Form of the Submillimeter Clump Mass Function
- Probing fragmentation and velocity sub-structure in the massive NGC 6334 filament with ALMA
- ALMA Observations of Massive Clouds in the Central Molecular Zone: Jeans Fragmentation and Cluster Formation
- Gas Kinematics of the Massive Protocluster G286.21+0.17 Revealed by ALMA