Widening of Protostellar Outflows: an Infrared Outflow Survey in Low Luminosity Objects
arXiv:1702.02732 · doi:10.3847/1538-3881/aa5ff8
Abstract
We present an outflow survey toward 20 Low Luminosity Objects (LLOs), namely protostars with an internal luminosity lower than 0.2 Lsun. Although a number of studies have reported the properties of individual LLOs, the reasons for their low luminosity remain uncertain. To answer this question, we need to know the evolutionary status of LLOs. Protostellar outflows are found to widen as their parent cores evolve, and therefore, the outflow opening angle could be used as an evolutionary indicator. The infrared scattered light escapes out through the outflow cavity and highlights the cavity wall, giving us the opportunity to measure the outflow opening angle. Using the Canada-France-Hawaii Telescope, we detected outflows toward eight LLOs out of 20 at Ks band, and based on archival Spitzer IRAC1 images, we added four outflow-driving sources from the remaining 12 sources. By fitting these images with radiative transfer models, we derive the outflow opening angles and inclination angles. To study the widening of outflow cavities, we compare our sample with the young stellar objects from Arce & Sargent 2006 and Velusamy et al. 2014 in the plot of opening angle versus bolometric temperature taken as an evolutionary indicator.Our LLO targets match well the trend of increasing opening angle with bolometric temperature reported by Arce & Sargent and are broadly consistent with that reported by Velusamy et al., suggesting that the opening angle could be a good evolutionary indicator for LLOs. Accordingly, we conclude that at least 40% of the outflow-driving LLOs in our sample are young Class 0 objects.
Accepted for publication in AJ, 13 pages, 9 figures
References in corpus (14)
- The Evolution of Outflow-Envelope Interactions in Low-Mass Protostars
- Identifying the Low Luminosity Population of Embedded Protostars in the c2d Observations of Clouds and Cores
- Molecular Outflows Driven by Low-Mass Protostars. I. Correcting for Underestimates When Measuring Outflow Masses and Dynamical Properties
- Characterizing the nature of embedded young stellar objects through silicate, ice and millimeter observations
- The Spitzer c2d Survey of Nearby Dense Cores: I: First Direct Detection of the Embedded Source in IRAM 04191+1522
- The Turbulent Origin of Outflow and Spin Misalignment in Multiple Star Systems
- Rotating molecular outflows: the young T Tauri star in CB26
- Molecule sublimation as a tracer of protostellar accretion: Evidence for accretion bursts from high angular resolution C18O images
- Misalignment of Outflow Axes in the Proto-Multiple Systems in Perseus
- IC348-SMM2E: a Class 0 proto-brown dwarf candidate forming as a scaled-down version of low-mass stars
- The evolutionary state of the southern dense core Cha-MMS1
- HiRes Deconvolved Spitzer Images of 89 Protostellar Jets and Outflows: New Data on Evolution of Outflow Morphology
- IRAS 16253-2429: the First Proto-Brown Dwarf Binary Candidate Identified through Dynamics of Jets
- Properties of the Molecular Cores of Low Luminosity Objects
Cited by in corpus (19)
- ALMA observations of dust polarization and molecular line emission from the Class 0 protostellar source Serpens SMM1
- Low dust emissivities and radial variations in the envelopes of Class 0 protostars: a signature of early grain growth?
- Dust Polarization Toward Embedded Protostars in Ophiuchus with ALMA. III. Survey Overview
- Characterizing magnetic field morphologies in three Serpens protostellar cores with ALMA
- Chronology of Episodic Accretion in Protostars -- an ALMA survey of the CO and HO snowlines
- Zooming in on Individual Star Formation: Low- and High-mass Stars
- An Episodic Wide-angle Outflow in HH 46/47
- ALMA Survey of Orion Planck Galactic Cold Clumps (ALMASOP) II. Survey overview: a first look at 1.3 mm continuum maps and molecular outflows
- Probing Episodic Accretion in Very Low Luminosity Objects
- The JCMT BISTRO survey: alignment between outflows and magnetic fields in dense cores/clumps
- An HST Survey of Protostellar Outflow Cavities: Does Feedback Clear Envelopes?
- The Evolution of Protostellar Outflow Cavities, Kinematics, and Angular Distribution of Momentum and Energy in Orion A: Evidence for Dynamical Cores
- ALMA observations of the protostellar disk around the VeLLO IRAS 16253-2429
- CO multi-line observations of HH 80-81: a two-component molecular outflow associated with the largest protostellar jet in our Galaxy
- Modeling snowline locations in protostars: The impact of the structure of protostellar cloud cores
- Protostellar Outflows: a window to the past
- Extended Ionized Fe Objects in the UWIFE Survey
- Can Protostellar Outflows Set Stellar Masses?
- Jets in Low-Mass Protostars