2011The Astrophysical Journal Supplement SeriesOpen access

DISK AND ENVELOPE STRUCTURE IN CLASS 0 PROTOSTARS. II. HIGH-RESOLUTION MILLIMETER MAPPING OF THE SERPENS SAMPLE

Melissa L. Enoch, Stuartt Corder, Gaspard Duchêne, Douglas C.‐J. Bock, Alberto D. Bolatto, T. Culverhouse, Woojin Kwon, James W. Lamb, E. M. Leitch, Daniel P. Marrone, Stephen Muchovej, Laura M. Pérez, Stephen L. Scott, Peter Teuben, M. C. H. Wright, B. A. Zauderer

Open full text 91 citations

Abstract

We present high-resolution CARMA 230 GHz continuum imaging of nine deeply embedded protostars in the Serpens Molecular Cloud, including six of the nine known Class 0 protostars in Serpens. This work is part of a program to characterize disk and envelope properties for a complete sample of Class 0 protostars in nearby low-mass star-forming regions. Here, we present CARMA maps and visibility amplitudes as a function of uv -distance for the Serpens sample. Observations are made in the B, C, D, and E antenna configurations, with B configuration observations utilizing the CARMA Paired Antenna Calibration System. Combining data from multiple configurations provides excellent uv -coverage (4–500 kλ), allowing us to trace spatial scales from 10 2 to 10 4 AU. We find evidence for compact disk components in all of the observed Class 0 protostars, suggesting that disks form at very early times ( t < 0.2 Myr) in Serpens. We make a first estimate of disk masses using the flux at 50 kλ, where the contribution from the envelope should be negligible, assuming an unresolved disk. The resulting disk masses range from 0.04 M ☉ to 1.7 M ☉ , with a mean of approximately 0.2 M ☉ . Our high-resolution maps are also sensitive to binary or multiple sources with separations ≳ 250 AU, but significant evidence of multiplicity on scales <2000 AU is seen in only one source.

Open-access reader

About this research paper

What this paper is about

We present high-resolution CARMA 230 GHz continuum imaging of nine deeply embedded protostars in the Serpens Molecular Cloud, including six of the nine known Class 0 protostars in Serpens. This work is part of a program to characterize disk and envelope properties for a complete sample of Class 0 protostars in nearby low-mass star-forming regions. Here, we present CARMA maps and visibility amplitudes as a function of uv -distance for the Serpens sample. Observations are made in the B, C, D, and E antenna configurations, with B configuration observations utilizing the CARMA Paired Antenna Calibration System. Combining data from multiple configurations provides excellent uv -coverage (4–500 kλ), allowing us to trace spatial scales from 10 2 to 10 4 AU. We find evidence for compact disk components in all of the observed Class 0 protostars, suggesting that disks form at very early times ( t < 0.2 Myr) in Serpens. We make a first estimate of disk masses using the flux at 50 kλ, where the contribution from the envelope should be negligible, assuming an unresolved disk. The resulting disk masses range from 0.04 M ☉ to 1.7 M ☉ , with a mean of approximately 0.2 M ☉ . Our high-resolution maps are also sensitive to binary or multiple sources with separations ≳ 250 AU, but significant evidence of multiplicity on scales <2000 AU is seen in only one source.

Why it matters

OpenAlex reports 91 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We present high-resolution CARMA 230 GHz continuum imaging of nine deeply embedded protostars in the Serpens Molecular Cloud, including six of the nine known Class 0 protostars in Serpens. This work is part of a program to characterize disk and envelope properties for a complete sample of Class 0 protostars in nearby low-mass star-forming regions. Here, we present CARMA maps and visibility amplitudes as a function of uv -distance for the Serpens sample. Observations are made in the B, C, D, and E antenna configurations, with B configuration observations utilizing the CARMA Paired Antenna Calibration System. Combining data from multiple configurations provides excellent uv -coverage (4–500 kλ), allowing us to trace spatial scales from 10 2 to 10 4 AU. We find evidence for compact disk components in all of the observed Class 0 protostars, suggesting that disks form at very early times ( t < 0.2 Myr) in Serpens. We make a first estimate of disk masses using the flux at 50 kλ, where the contribution from the envelope should be negligible, assuming an unresolved disk. The resulting disk masses range from 0.04 M ☉ to 1.7 M ☉ , with a mean of approximately 0.2 M ☉ . Our high-resolution maps are also sensitive to binary or multiple sources with separations ≳ 250 AU, but significant evidence of multiplicity on scales <2000 AU is seen in only one source.

Key concepts: Serpens, Protostar, Astrophysics, Physics, Millimeter, Submillimeter Array, Molecular cloud, Star formation

Related papers

Back to paper searchBrowse research topicsOriginal source
DISK AND ENVELOPE STRUCTURE IN CLASS 0 PROTOSTARS. II. HIGH-RESOLUTION MILLIMETER MAPPING OF THE SERPENS SAMPLE — Research Paper | ScholarLens