SIMBAD references

2017ApJ...843...55M - Astrophys. J., 843, 55-55 (2017/July-1)

The JCMT Transient Survey: data reduction and calibration methods.

MAIRS S., LANE J., JOHNSTONE D., KIRK H., LACAILLE K., BOWER G.C., BELL G.S., GRAVES S., CHAPMAN S. (The JCMT Transient Team)

Abstract (from CDS):

Though there has been a significant amount of work investigating the early stages of low-mass star formation in recent years, the evolution of the mass assembly rate onto the central protostar remains largely unconstrained. Examining in depth the variation in this rate is critical to understanding the physics of star formation. Instabilities in the outer and inner circumstellar disk can lead to episodic outbursts. Observing these brightness variations at infrared or submillimeter wavelengths constrains the current accretion models. The JCMT Transient Survey is a three-year project dedicated to studying the continuum variability of deeply embedded protostars in eight nearby star-forming regions at a one-month cadence. We use the SCUBA-2 instrument to simultaneously observe these regions at wavelengths of 450 and 850 µm. In this paper, we present the data reduction techniques, image alignment procedures, and relative flux calibration methods for 850 µm data. We compare the properties and locations of bright, compact emission sources fitted with Gaussians over time. Doing so, we achieve a spatial alignment of better than 1'' between the repeated observations and an uncertainty of 2%-3% in the relative peak brightness of significant, localized emission. This combination of imaging performance is unprecedented in ground-based, single-dish submillimeter observations. Finally, we identify a few sources that show possible and confirmed brightness variations. These sources will be closely monitored and presented in further detail in additional studies throughout the duration of the survey.

Abstract Copyright: © 2017. The American Astronomical Society. All rights reserved.

Journal keyword(s): methods: data analysis - stars: formation - submillimeter: ISM - submillimeter: general - techniques: image processing - techniques: image processing

Simbad objects: 14

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