Probing the Protostellar Envelope around L1157: the Dust and Gas Connection
arXiv:0912.4527 · doi:10.1088/0004-637X/709/1/470
Abstract
We present observations of the Class 0 protostar L1157-mm using the Combined Array for Research in Millimeter-wave Astronomy (CARMA) in 3 mm dust continuum and N2H+ line emission. In the N2H+ line, we detect a large-scale envelope extended over a linear size of ~20,000AU flattened in the direction perpendicular to the outflow. This N2H+ feature coincides with the outer envelope seen in the 8 micron extinction by Looney et al. Meanwhile, the dust continuum traces the compact, nearly spherical structure of the inner envelope, where N2H+ becomes depleted. This highly flattened N2H+ envelope also shows dynamical signatures consistent with gravitational infall in the inner region, but a slow, solid-body rotation at large scales. This flattened structure is not a rotationally supported circumstellar disk; instead, it resembles a prestellar core both morphologically and kinematically, representing the early phase of a Class 0 system. In this paper, we construct a simple model to interpret both the dust continuum and N2H+ emission and suggest a possible dynamical scenario for the overall properties of the envelope.
Accepted for publication by the ApJ, 34 pages, 10 figures and 2 tables
References in corpus (13)
- Theory of Star Formation
- The N2D+/N2H+ ratio as an evolutionary tracer of Class 0 protostars
- Dynamics of Dense Cores in the Perseus Molecular Cloud
- A Flattened Protostellar Envelope in Absorption around L1157
- The Excitation of NH in Interstellar Molecular Clouds. I - Models
- OVRO N2H+ Observations of Class 0 Protostars: Constraints on the Formation of Binary Stars
- The Spitzer survey of interstellar clouds in the Gould Belt. II. The Cepheus Flare observed with IRAC and MIPS
- ATCA and Spitzer Observations of the Binary Protostellar Systems CG30 and BHR71
- Constraining the Earliest Circumstellar Disks and their Envelopes
- The Shapes of Molecular Cloud Cores in Orion
- Molecular line profiles as diagnostics of protostellar collapse: modelling the `blue asymmetry' in inside-out infall
- Using Chemistry to Unveil the Kinematics of Starless Cores: Complex Radial Motions in Barnard 68
- Star Forming Regions in Cepheus
Cited by in corpus (37)
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars. A Statistical Characterization of Class 0 and I Protostellar Disks
- Mapping the Shores of the Brown Dwarf Desert II: Multiple Star Formation in Taurus-Auriga
- The VLA Nascent Disk and Multiplicity Survey of Perseus Protostars (VANDAM). II. Multiplicity of Protostars in the Perseus Molecular Cloud
- TADPOL: A 1.3 mm Survey of Dust Polarization in Star-forming Cores and Regions
- SMA Observations of Class 0 Protostars: A High-Angular Resolution Survey of Protostellar Binary Systems
- Protostars: Forges of cosmic rays?
- Three-Dimensional Radiation Transfer in Young Stellar Objects
- Astrochemical evolution along star formation: Overview of the IRAM Large Program ASAI
- Complex Structure in Class 0 Protostellar Envelopes
- Complex Structure in Class 0 Protostellar Envelopes II: Kinematic Structure from Single-Dish and Interferometric Molecular Line Mapping
- The Magnetic Field Morphology of the Class 0 Protostar L1157-mm
- The enigmatic core L1451-mm: a first hydrostatic core? or a hidden VeLLO?
- Alignment Between Flattened Protostellar Infall Envelopes and Ambient Magnetic Fields
- A Sub-arcsecond Survey Toward Class 0 Protostars in Perseus: Searching for Signatures of Protostellar Disks
- Unveiling the Evolutionary Sequence from Infalling Envelopes to Keplerian Disks around Low-Mass Protostars
- Complex Structure in Class 0 Protostellar Envelopes III: Velocity Gradients in Non-Axisymmetric Envelopes, Infall or Rotation?
- Modeling the Resolved Disk Around the Class 0 Protostar L1527
- Low dust emissivities and radial variations in the envelopes of Class 0 protostars: a signature of early grain growth?
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Perseus Protostars. VI. Characterizing the Formation Mechanism for Close Multiple Systems
- The Envelope and Embedded Disk around the Class 0 Protostar L1157-mm: Dual-wavelength Interferometric Observations and Modeling
- Observations of Infalling and Rotational Motions on a 1,000-AU Scale around 17 Class 0 and 0/I Protostars: Hints of Disk Growth and Magnetic Braking?
- Resolved Depletion Zones and Spatial Differentiation of N2H+ and N2D+
- Angular momentum profiles of Class 0 protostellar envelopes
- VLA and CARMA Observations of Protostars in the Cepheus Clouds: Sub-arcsecond Proto-Binaries Formed via Disk Fragmentation
- Magnetic Properties of Star-Forming Dense Cores
- First results from the CALYPSO IRAM-PdBI survey. I. Kinematics of the inner envelope of NGC1333-IRAS2A
- Characterizing the Youngest Herschel-detected Protostars I. Envelope Structure Revealed by CARMA Dust Continuum Observations
- The Formation Conditions of the Wide Binary Class 0 Protostars within BHR 71
- Laboratory measurements and astronomical search for cyanomethanimine
- The Dynamics of the Envelope Surrounding the Protostar HH 211-mm
- Jets and Wide Angle Outflows in Cepheus E: New Evidence from Spitzer
- Broad N2H+ emission towards the protostellar shock L1157-B1
- Filamentary Star Formation: Observing the Evolution toward Flattened Envelopes
- Magnetic Field Structure in Spheroidal Star-Forming Clouds. II. Estimating Field Structure from Observed Maps
- Distance, magnetic field and kinematics of a filamentary cloud LDN 1157
- A detailed temperature map of the archetypal protostellar shocks in L1157
- A 16 au Binary in the Class 0 Protostar L1157 MMS