4.7 Article

A Large Moving Group within the Lower Centaurus Crux Association

期刊

ASTROPHYSICAL JOURNAL
卷 868, 期 1, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.3847/1538-4357/aae64c

关键词

brown dwarfs; open clusters and associations: individual (Lower Centaurus Crux); protoplanetary disks; stars: formation; stars: luminosity function, mass function

资金

  1. German Research Foundation (DFG) [Sonderforschungsbereich SFB 881]
  2. Spanish MICINN [AyA2011-24052]
  3. National Aeronautics and Space Administration

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Scorpius-Centaurus is the nearest OB association, and its hundreds of members are divided into subgroups, including the Lower Centaurus Crux (LCC). Here we study the dynamics of the LCC area. We report the revelation of a large moving group containing more than 1800 intermediate- and low-mass young stellar objects and brown dwarfs that escaped identification until Gaia DR2 allowed a kinematic and photometric selection to be performed. We investigate the stellar and substellar content of this moving group using the Gaia DR2 astrometric and photometric measurements. The median distance of the members is 114.5 pc, and 80% lie between 102 and 135 pc from the Sun. Our new members cover a mass range of 0.02-5M(circle dot) and add up to a total mass of about 700M(circle dot). The present-day mass function follows a log-normal law with m(c) - 0.22M(circle dot) and sigma - 0.64. We find more than 200 brown dwarfs in our sample. The star formation rate had its maximum of 8 x 10(-5) M-circle dot yr(-1) about 9 Myr ago. We grouped the new members into four denser subgroups, which have increasing age from 7 to 10 Myr, surrounded by free-floating young stars with mixed ages. Our isochronal ages, now based on accurate parallaxes, are compatible with several earlier studies of the region. The whole complex is presently expanding, and the expansion started between 8 and 10 Myr ago. Two hundred members show infrared excess compatible with circumstellar disks from full to debris disks. This discovery provides a large sample of nearby young stellar and substellar objects for disk and exoplanet studies.

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