Kinematics in Partially Ionised Molecular Clouds: Implications for the Transition to Coherence
arXiv:1410.4425 · doi:10.1088/0004-637X/798/2/75
Abstract
Bailey & Basu (2014) show analysis of density and mass-to-flux ratio maps for simulations with either an ionisation profile which takes into account photoionisation (step-like profile) or a cosmic ray only ionisation profile. We extend this study to analyse the effect of these ionisation profiles on velocity structures, kinematics, and synthetic spectra. Clump regions are found to occur at the convergence of two flows with a low velocity region and velocity direction transition occurring at the junction. Models with evident substructure show that core formation occurs on the periphery of these velocity valleys. Analysis of synthetic spectra reveals the presence of large non-thermal components within low-density gas, especially for models with the step-like ionisation profile. All cores show small, sub-thermal relative motions compared to background gas. Large deviations within this analysis are due to the line of sight intersecting low- and high-density regions across the velocity switch transition. Positive deviations correspond to a foreground core moving away from the observer while negative deviations correspond to a background core moving toward the observer. Comparison of velocities resulting from different ionisation profiles suggest that high ionisation fractions yield supersonic velocities, up to two times the sound speed, while regions with low ionisation fractions tend to be subsonic or mildly supersonic. This suggests that the transition to coherence within cores could be a transition between high and low ionisation fractions within the gas.
15 pages, 11 figures, 2 tables. Accepted for publication in ApJ
References in corpus (9)
- Cores, filaments, and bundles: hierarchical core formation in the L1495/B213 Taurus region
- The relation between gas and dust in the Taurus Molecular Cloud
- The dynamical properties of dense filaments in the infrared dark cloud G035.39-00.33
- Complex, Quiescent Kinematics in a Highly Filamentary Infrared Dark Cloud
- A Large Scale Survey of NGC1333
- Nonlinear Evolution of Gravitational Fragmentation Regulated by Magnetic Fields and Ambipolar Diffusion
- On the relative motions of dense cores and envelopes in star-forming molecular clouds
- The Interplay of Turbulence & Magnetic Fields in Star-Forming Regions: Simulations and Observations
- Non-Ideal Magnetohydrodynamic Simulations of the Two-Stage Fragmentation Model for Cluster Formation
Cited by in corpus (8)
- The Green Bank Ammonia Survey: Dense Cores Under Pressure in Orion A
- Kinematics of dense gas in the L1495 filament
- Neutral vs Ion Linewidths in Barnard 5: Evidence for Penetration by MHD Waves
- Similar complex kinematics within two massive, filamentary infrared dark clouds
- Ubiquitous supersonic component in L1688 coherent cores
- The Kinematic and Chemical Properties of a Potential Core-Forming Clump: Perseus B1-E
- Ionisation in Turbulent Magnetic Molecular Clouds I. Effect on Density and Mass-to-Flux Ratio Structures
- Why do some cores remain starless ?