The properties of SCUBA cores in the Perseus molecular cloud: the bias of clump-finding algorithms
arXiv:0910.4070 · doi:10.1111/j.1365-2966.2009.15911.x
Abstract
We present a new analysis of the properties of star-forming cores in the Perseus molecular cloud, identified in SCUBA 850 micron data. Our goal is to determine which core properties can be robustly identified and which depend on the extraction technique. Four regions in the cloud are examined: NGC1333, IC348/HH211, L1448 and L1455. We identify clumps of dust emission using two popular automated algorithms, CLFIND and GAUSSCLUMPS, finding 85 and 122 clumps in total respectively. Some trends are true for both populations: clumps become increasingly elongated over time and are consistent with constant surface brightness objects, with an average brightness ~4 to 10 times larger than the surrounding molecular cloud; the clump mass distribution (CMD) resembles the stellar intial mass function, with a slope alpha = -2.0+/-0.1 for CLFIND and alpha = -3.15+/-0.08 for GAUSSCLUMPS, which straddle the Salpeter value. The mass at which the slope shallows (similar for both algorithms at M~6 Msun) implies a star-forming efficiency of between 10 and 20 per cent. Other trends reported elsewhere depend on the clump-finding technique: we find protostellar clumps are both smaller (for GAUSSCLUMPS) and larger (for CLFIND) than their starless counterparts; the functional form, best-fitting to the CMD, is different for the two algorithms. The GAUSSCLUMPS CMD is best-fitted with a log-normal distribution, whereas a broken power law is best for CLFIND; the reported lack of massive starless cores in previous studies can be seen in the CLFIND but not the GAUSSCLUMPS data. Our approach highlights similarities and differences between the clump populations, illustrating the caution that must be exercised when comparing results from different studies and interpreting the properties of continuum cores.
19 pages, 17 figures, accepted for publication by MNRAS
References in corpus (17)
- The Mass Distribution and Lifetime of Prestellar Cores in Perseus, Serpens, and Ophiuchus
- Star formation in Perseus - V. Outflows detected by HARP
- Bolocam Survey for 1.1 mm Dust Continuum Emission in the c2d Legacy Clouds. II. Ophiuchus
- The Large and Small Scale Structures of Dust in the Star-Forming Perseus Molecular Cloud
- An Ammonia Spectral Atlas of Dense Cores in Perseus
- A SCUBA survey of Orion, the low-mass end of the core mass function
- The James Clerk Maxwell Telescope Legacy Survey of Nearby Star-forming Regions in the Gould Belt
- Clump Lifetimes and the Initial Mass Function
- The relationship between the prestellar core mass function and the stellar initial mass function
- The structure of molecular clouds and the universality of the clump mass function
- The initial conditions of star formation VIII: an observational study of the Ophiuchus cloud L1688 and implications for the prestellar core mass function
- High Mass Star Formation. III. The Functional Form of the Submillimeter Clump Mass Function
- Dust Emission from the Perseus Molecular Cloud
- On the Evolution of the Dense Core Mass Function
- Statistical Assessment of Shapes and Magnetic Field Orientations in Molecular Clouds through Polarization Observations
- The Shapes of Molecular Cloud Cores in Orion
- The Formation and Evolution of Prestellar Cores
Cited by in corpus (24)
- Planck Early Results: The Galactic Cold Core Population revealed by the first all-sky survey
- Mapping Distances Across the Perseus Molecular Cloud Using CO Observations, Stellar Photometry, and Gaia DR2 Parallax Measurements
- Formation of Magnetized Prestellar Cores with Ambipolar Diffusion and Turbulence
- First results from the Herschel Gould Belt Survey in Taurus
- Planck Early Results: The submillimetre properties of a sample of Galactic cold clumps
- The end of star formation in Chamaeleon I ? A LABOCA census of starless and protostellar cores
- The fractal dimension of star-forming regions at different spatial scales in M33
- Observational constraints on star cluster formation theory - I. The mass-radius relation
- Prestellar Core Formation, Evolution, and Accretion from Gravitational Fragmentation in Turbulent Converging Flows
- 13CO Cores in Taurus Molecular Cloud
- Measuring the Clump Mass Function in the Age of SCUBA2, Herschel, and ALMA
- Flow-Driven Cloud Formation and Fragmentation: Results From Eulerian and Lagrangian Simulations
- Assessing the Performance of Molecular Gas Clump Identification Algorithms
- Dense cores and star formation in the giant molecular cloud Vela~C
- A submillimetre survey of the kinematics of the Perseus molecular cloud - III. Clump kinematics
- Spatially associated clump populations in Rosette from CO and dust maps
- Connecting the Dots: Analyzing Synthetic Observations of Star-Forming Clumps in Molecular Clouds
- Dense molecular cloud cores as a source of micrometer-sized grains in galaxies
- CO Core Candidates in the Gemini Molecular Cloud
- The Correlation of Dust and Gas Emission in Star-Forming Environments
- Non-similar collapse of singular isothermal spherical molecular cloud cores with nonzero initial velocities
- Matter Infall in Collapsing Molecular Cloud Cores with an Axial Magnetic Field
- Modeling of molecular clouds with formation of prestellar cores
- Effects of magnetic field orientations in dense cores on gas kinematics in protostellar envelopes