A search for mass segregation of stars and brown dwarfs in ρ Ophiuchi
arXiv:1208.0005 · doi:10.1111/j.1365-2966.2012.21790.x
Abstract
We apply two different algorithms to search for mass segregation to a recent observational census of the rho Ophiuchi star forming region. Firstly, we apply the Lambda_MSR method, which compares the minimum spanning tree (MST) of a chosen subset of stars to MSTs of random subsets of stars in the cluster, and determine the mass segregation ratio, Lambda_MSR. Secondly, we apply the m-Sigma method, which calculates the local stellar surface density around each star and determines the statistical significance of the average surface density for a chosen mass bin, compared to the average surface density in the whole cluster. Using both methods, we find no indication of mass segregation (normal or inverse) in the spatial distribution of stars and brown dwarfs in rho Ophiuchi. Although rho Ophiuchi suffers from high visual extinction, we show that a significant mass segregation signature would be detectable, albeit slightly diluted, despite dust obscuration of centrally located massive stars.
8 pages, 5 figures, accepted for publication in MNRAS
References in corpus (9)
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- Dynamical mass segregation on a very short timescale
- Using the minimum spanning tree to trace mass segregation
- Near-infrared cross-dispersed spectroscopy of brown dwarf candidates in the Upper Sco association
- The Stellar Mass Distribution in the Giant Star Forming Region NGC 346
- Spectroscopy of new brown dwarf members of rho Ophiuchi and an updated initial mass function
- The Initial Mass Function and Disk Frequency of the Rho Ophiuchi Cloud: An Extinction-Limited Sample
- Identifying star clusters in a field: A comparison of different algorithms
- Substellar Objects in Nearby Young Clusters (SONYC) V: New brown dwarfs in rho Ophiuchi
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