English

Quantifying Variability of YSOs in the Mid-IR Over Six Years with NEOWISE

Solar and Stellar Astrophysics 2022-01-12 v1 Astrophysics of Galaxies

Abstract

Variability in young stellar objects (YSOs) can be caused by various time-dependent phenomena associated with star formation, including accretion rates, geometric changes in the circumstellar disks, stochastic hydromagnetic interactions between stellar surfaces and inner disk edges, reconnections within the stellar magnetosphere, and hot/cold spots on stellar surfaces. We uncover and characterize \sim1700 variables from a sample of \sim5400 YSOs in nearby low-mass star-forming regions using mid-IR light curves obtained from the 6.5-years NEOWISE All Sky Survey. The mid-IR variability traces a wide range of dynamical, physical, and geometrical phenomenon. We classify six types of YSO mid-IR variability based on their light curves: secular variability (Linear,Curved,PeriodicLinear, Curved, Periodic) and stochastic variability (Burst,Drop,IrregularBurst, Drop, Irregular). YSOs in earlier evolutionary stages have higher fractions of variables and higher amplitudes for the variability, with the recurrence timescale of FUor-type outbursts (defined here as Δ\DeltaW1 or Δ\DeltaW2 >1>1 mag followed by inspection of candidates) of \sim1000 years in the early embedded protostellar phase. Known eruptive young stars and subluminous objects show fractions of variables similar to the fraction (55%\sim55\%) found in typical protostars, suggesting that these two distinct types are not distinct in variability over the 6.5-year timescale. Along with brightness variability, we also find a diverse range of secular color variations, which can be attributed to a competitive interplay between the variable accretion luminosity of the central source and the variable extinction by material associated with the accretion process.

Keywords

Cite

@article{arxiv.2107.10751,
  title  = {Quantifying Variability of YSOs in the Mid-IR Over Six Years with NEOWISE},
  author = {Wooseok Park and Jeong-Eun Lee and Carlos Contreras Peña and Doug Johnstone and Gregory Herczeg and Sieun Lee and Seonjae Lee and Anupam Bhardwaj and Gerald H. Moriarty-Schieven},
  journal= {arXiv preprint arXiv:2107.10751},
  year   = {2022}
}

Comments

Accepted for publication in ApJ