A submillimetre survey of the kinematics of the Perseus molecular cloud - III. Clump kinematics
arXiv:1007.4557 · doi:10.1111/j.1365-2966.2010.17424.x
Abstract
We explore the kinematics of continuum clumps in the Perseus molecular cloud, derived from C18O J=3-2 data. Two populations are examined, identified using the automated algorithms CLFIND and GAUSSCLUMPS on existing SCUBA data. The clumps have supersonic linewidths with distributions which suggest the C18O line probes a lower-density 'envelope' rather than a dense inner core. Similar linewidth distributions for protostellar and starless clumps implies protostars do not have a significant impact on their immediate environment. The proximity to an active young stellar cluster seems to affect the linewidths: those in NGC1333 are greater than elsewhere. In IC348 the proximity to the old IR cluster has little influence, with the linewidths being the smallest of all. A virial analysis suggests that the clumps are bound and close to equipartition. In particular, the starless clumps occupy the same parameter space as the protostars, suggesting they are true stellar precursors and will go on to form stars. We also search for ordered C18O velocity gradients across the face of each core, usually interpreted as rotation. We note a correlation between the directions of the identified gradients and outflows across protostars, indicating we may not have a purely rotational signature. The fitted gradients are larger than found in previous work, probably as a result of the higher resolution of our data and/or outflow contamination. These gradients, if interpreted solely in terms of rotation, suggest that rotation is not dynamically significant. Furthermore, derived specific angular momenta are smaller than observed in previous studies, centred around j~0.001 km/s pc, which indicates we have identified lower levels of rotation, or that the C18O J=3-2 line probes conditions significantly denser and/or colder than n~10^5 per cc and T~10 K.
20 pages, 20 figures, accepted for publication by MNRAS. Supplementary, on-line only material available from http://www.mrao.cam.ac.uk/~eic22/Papers/CR10b_suppmaterial.pdf
References in corpus (18)
- Slow Star Formation in Dense Gas: Evidence and Implications
- The Mass Distribution and Lifetime of Prestellar Cores in Perseus, Serpens, and Ophiuchus
- Star formation in Perseus - V. Outflows detected by HARP
- HARP/ACSIS: A submillimetre spectral imaging system on the James Clerk Maxwell Telescope
- The Large and Small Scale Structures of Dust in the Star-Forming Perseus Molecular Cloud
- An Ammonia Spectral Atlas of Dense Cores in Perseus
- Direct observation of a sharp transition to coherence in Dense Cores
- Dynamics of Dense Cores in the Perseus Molecular Cloud
- Driven and Decaying Turbulence Simulations of Low-Mass Star Formation: From Clumps to Cores to Protostars
- The JCMT Legacy Survey of the Gould Belt: a first look at Orion B with HARP
- Clump Lifetimes and the Initial Mass Function
- The relationship between the prestellar core mass function and the stellar initial mass function
- TMC-1C: an accreting starless core
- The Kinematics of Molecular Cloud Cores in the Presence of Driven and Decaying Turbulence: Comparisons with Observations
- A submillimetre survey of the kinematics of the Perseus molecular cloud: I. data
- On the Evolution of the Dense Core Mass Function
- The properties of SCUBA cores in the Perseus molecular cloud: the bias of clump-finding algorithms
- What does a universal IMF imply about star formation?
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- Molecular Outflows Driven by Low-Mass Protostars. I. Correcting for Underestimates When Measuring Outflow Masses and Dynamical Properties
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- The enigmatic core L1451-mm: a first hydrostatic core? or a hidden VeLLO?
- IN-SYNC II: Virial Stars from Sub-Virial Cores -- The Velocity Dispersion of Embedded Pre-Main-Sequence Stars in NGC 1333
- Gas phase Elemental abundances in Molecular cloudS (GEMS) VII. Sulfur elemental abundance
- Gas phase Elemental abundances in Molecular cloudS (GEMS). IV. Observational results and statistical trends
- Herschel Observations of a Potential Core Forming Clump: Perseus B1-E
- Observation of rotation in star forming regions: clouds, cores, disks, and jets
- A distance limited sample of massive star forming cores from the RMS survey
- Earliest Stages of Protocluster Formation: Substructure and Kinematics of Starless Cores in Orion
- The segregation of starless and protostellar clumps in the Hi-GAL l=224deg region
- Star formation in Chamaeleon I and III: a molecular line study of the starless core population
- Role of environment and gas temperature in the formation of multiple protostellar systems: molecular tracers
- Rotation of Two Micron All Sky Survey Clumps in Molecular Clouds
- Independent Core Rotation in Massive Filaments in Orion
- The Milky Way atlas for linear filaments II. clump rotation versus filament orientation
- The factors that influence protostellar multiplicity I: Gas temperature, density, and mass in Perseus with Nobeyama