Global mass segregation in hydrodynamical simulations of star formation
arXiv:1106.1181 · doi:10.1111/j.1365-2966.2011.19067.x
Abstract
Recent analyses of mass segregation diagnostics in star forming regions invite a comparison with the output of hydrodynamic simulations of star formation. In this work we investigate the state of mass segregation of 'stars' (i.e. sink particles in the simulations) in the case of hydrodynamical simulations which omit feedback. We first discuss methods to quantify mass segregation in substructured regions, either based on the minimum spanning tree (Allison's Lambda), or through analysis of correlations between stellar mass and local stellar surface number densities. We find that the presence of even a single 'outlier' (i.e. a massive object far from other stars) can cause the Allison Lambda method to describe the system as inversely mass segregated, even where in reality the most massive sink particles are overwhelmingly in the centres of the subclusters. We demonstrate that a variant of the Lambda method is less susceptible to this tendency but also argue for an alternative representation of the data in the plane of stellar mass versus local surface number density. The hydrodynamical simulations show global mass segregation from very early times which continues throughout the simulation, being only mildly influenced during sub-cluster merging. We find that up to approx. 2-3% of the "massive" sink particles (m > 2.5 Msun) are in relative isolation because they have formed there, although other sink particles can form later in their vicinity. Ejections of massive sinks from subclusters do not contribute to the number of isolated massive sink particles, as the gravitational softening in the calculation suppresses this process.
6 pages, 6 figures
References in corpus (9)
- Dynamical mass segregation on a very short timescale
- Using the minimum spanning tree to trace mass segregation
- Gravitational fragmentation and the formation of brown dwarfs in stellar clusters
- The secrets of the nearest starburst cluster: II. The present-day mass function in NGC 3603
- A Chandra Study of the Rosette Star-Forming Complex. I. The Stellar Population and Structure of the Young Open Cluster NGC 2244
- Young Stellar Groups and Their Most Massive Stars
- The structures of embedded clusters in the Perseus, Serpens and Ophiuchus molecular clouds
- Mass segregation in very young open clusters -- A case study of NGC 2244 and NGC 6530
- On the mass segregation of stars and brown dwarfs in Taurus
Cited by in corpus (49)
- The dynamical state of stellar structure in star-forming regions
- Dynamical evolution of star forming regions
- Constraints on Massive Star Formation: Cygnus OB2 was always an Association
- The mmax-Mecl relation, the IMF and IGIMF: probabilistically sampled functions?
- A Census of Young Stars and Brown Dwarfs in IC 348 and NGC 1333
- Importance of the Initial Conditions for Star Formation - III: Statistical Properties of Embedded Protostellar Clusters
- On the Origin of Mass Segregation in NGC 3603
- Distribution of Serpens South protostars revealed with ALMA
- Dynamics versus structure: breaking the density degeneracy in star formation
- Evidence for feedback and stellar-dynamically regulated bursty star cluster formation: the case of the Orion Nebula Cluster
- Comparisons between different techniques for measuring mass segregation
- The Spatial Structure of Young Stellar Clusters. III. Physical Properties and Evolutionary States
- Observational constraints on star cluster formation theory - I. The mass-radius relation
- Dynamical evolution of star forming regions - II. Basic kinematics
- The JCMT Gould Belt Survey: Dense Core Clusters in Orion A
- Imprints of feedback in young gasless clusters?
- On the spatial distributions of dense cores in Orion B
- Radiation pressure in super star cluster formation
- Dynamical histories of the IC348 and NGC1333 star-forming regions in Perseus
- The Formation and Evolution of Small Star Clusters
- Stellar mass segregation as separating classifier between globular clusters and ultra-faint dwarf galaxies
- The JCMT Gould Belt Survey: A First Look at IC 5146
- The relation between accretion rates and the initial mass function in hydrodynamical simulations of star formation
- Very massive stars in not so massive clusters
- The JCMT Gould Belt Survey: Dense Core Clusters in Orion B
- How fast is mass-segregation happening in hierarchical formed embedded star clusters?
- Primordial Mass and Density Segregation in a Young Molecular Cloud
- Primordial mass segregation in simulations of star formation?
- A tale of two clusters: dynamical history determines disc survival in Tr14 and Tr16 in the Carina Nebula
- Looking for phase-space structures in star-forming regions: An MST-based methodology
- Hierarchical formation of Westerlund 1: a collapsing cluster with no primordial mass segregation?
- Constraints on star formation in NGC2264
- Berkeley 94 and Berkeley 96: Two Young Clusters with Different Dynamical Evolution
- Early dynamics and violent relaxation of multi-mass rotating star clusters
- Not so different after all: Properties and Spatial Structure of Column Density Peaks in the Pipe and Orion A Clouds
- Investigating the structure of star-forming regions using INDICATE
- No preferential spatial distribution for massive stars expected from their formation
- On the origin of planetary-mass objects in NGC1333
- The evolution of phase space densities in star-forming regions
- Evolution of spatio-kinematic structures in star-forming regions: are Friends of Friends worth knowing?
- Probing the Global Dust Properties and Cluster Formation Potential of the Giant Molecular Cloud G148.24+00.41
- The role of gas dynamical friction in the evolution of embedded stellar clusters
- Hubble-Lemaître fragmentation and the path to equilibrium of merger-driven cluster formation
- Simulations of Fractal Star Cluster Formation: I. New Insights for Measuring Mass Segregation of Star Clusters with SubStructure
- The velocity structure of Cygnus OB2
- Spatial differences between stars and brown dwarfs: a dynamical origin?
- A revised view of the Canis Major stellar overdensity with DECam and Gaia: new evidence of a stellar warp of blue stars
- A method to analyse velocity structure
- Mass Segregation in the CMZoom Survey