Abstract
Most protostars have luminosities that are fainter than expected from
steady accretion over the protostellar lifetime. The solution to this
problem may lie in episodic mass accretion—prolonged periods of very low
accretion punctuated by short bursts of rapid accretion. However, the
timescale and amplitude for variability at the protostellar phase is
almost entirely unconstrained. In A James Clerk Maxwell
Telescope/SCUBA-2 Transient Survey of Protostars in Nearby Star-forming
Regions, we are monitoring monthly with SCUBA-2 the submillimeter
emission in eight fields within nearby (<500 pc) star-forming regions to measure the accretion variability of protostars. The total survey area of ~1.6 deg2
includes ~105 peaks with peaks brighter than 0.5 Jy/beam (43 associated
with embedded protostars or disks) and 237 peaks of 0.125–0.5 Jy/beam
(50 with embedded protostars or disks). Each field has enough bright
peaks for flux calibration relative to other peaks in the same field,
which improves upon the nominal flux calibration uncertainties of
submillimeter observations to reach a precision of ~2%–3% rms, and also
provides quantified confidence in any measured variability. The
timescales and amplitudes of any submillimeter variation will then be
converted into variations in accretion rate and subsequently used to
infer the physical causes of the variability. This survey is the first
dedicated survey for submillimeter variability and complements other
transient surveys at optical and near-IR wavelengths, which are not
sensitive to accretion variability of deeply embedded protostars.
| Original language | English |
|---|---|
| Article number | 43 |
| Journal | Astrophysical Journal |
| Volume | 849 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - 27 Oct 2017 |
Keywords
- Stars: formation
- Stars: protostars
- Stars: variables: T Tauri, Herbig Ae/Be
- Submillimeter: stars
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