Warm SiO gas in molecular bullets associated with protostellar outflows
arXiv:astro-ph/0610037 · doi:10.1051/0004-6361:20065621
Abstract
In this paper we present the first SiO multiline analysis (from J=2-1 to J=11-10) of the molecular bullets along the outflows of the Class 0 sources L1448-mm and L1157-mm, obtained through observations with IRAM and JCMT. We have computed the main physical parameters in each bullet and compared them with other tracers of warm and dense gas and with models for the SiO excitation in shocks. We find that the bullets close to L1448--mm, associated with high velocity gas, have higher excitation conditions (n(H2) ~ 10^{6} cm^{-3}, T > 500 K) with respect to the L1157 bullets (n(H2) ~1-5 10^{5} cm^{-3}, T ~ 100-300 K). In both the sources, there is a clear evidence of the presence of velocity components having different excitation conditions, with the denser and/or warmer gas associated with the gas at the higher speed. In L1448 the bulk of the emission is due to the high-excitation and high velocity gas, while in L1157 most of the emission comes from the low excitation gas at ambient velocity. The observed velocity-averaged line ratios are well reproduced by shocks with speeds v_s larger than ~ 30 km/s and densities ~ 10^{5} - 10^{6} cm^{-3}. Plane-parallel shock models, however, fail to predict all the observed line profiles and in particular the very similar profiles shown by both low and high excitation lines. The overall observations support the idea that the L1157 clumps are shock interaction events older than the L1448 bullets close to the driving source. In the latter objects, the velocity structure and the variations of physical parameters with the velocity resemble very closely those found in optical/IR jets near the protostar, suggesting that similar launching and excitation mechanisms are also at the origin of collimated jets seen at millimetre wavelengths.
11pages, 9 figures, A&A accepted
References in corpus (6)
- An atomic and molecular database for analysis of submillimetre line observations
- SiO J=5--4 in the HH211 Protostellar Jet Imaged with the SMA
- Tracing the shock precursors in the L1448-mm/IRS3 outflows
- A survey of SiO 5-4 emission towards outflows from low-luminosity protostellar candidates
- A highly collimated, extremely high velocity outflow in Taurus
- The origin and structure of clumps along molecular outflows: the test case of CB3
Cited by in corpus (66)
- The earliest phases of high-mass star formation: a 3 square degree millimeter continuum mapping of Cygnus X
- Water in star-forming regions with Herschel (WISH): II. Evolution of 557 GHz 110-101 emission in low-mass protostars
- TADPOL: A 1.3 mm Survey of Dust Polarization in Star-forming Cores and Regions
- SiO line emission from C-type shock waves : interstellar jets and outflows
- Complex Molecules in the L1157 Molecular Outflow
- Parsec-scale SiO Emission in an Infrared Dark Cloud
- A molecular survey of outflow gas: velocity-dependent shock chemistry and the peculiar composition of the EHV gas
- Molecule survival in magnetized protostellar disk winds. I. Chemical model and first results
- The CHESS chemical Herschel surveys of star forming regions: Peering into the protostellar shock L1157-B1. I. Shock chemical complexity
- Extreme Active Molecular Jets in L1448C
- Water cooling of shocks in protostellar outflows: Herschel-PACS map of L1157
- Molecular ions in the protostellar shock L1157-B1
- Shells, jets, and internal working surfaces in the molecular outflow from IRAS 04166+2706
- Molecular gas chemistry in AGN. II. High-resolution imaging of SiO emission in NGC1068: shocks or XDR?
- PdBI sub-arcsecond study of the SiO microjet in HH212 - Origin and collimation of Class 0 jets
- ATLASGAL-selected massive clumps in the inner Galaxy, II: Characterisation of different evolutionary stages and their SiO emission
- ALMA-IMF I -- Investigating the origin of stellar masses: Introduction to the Large Program and first results
- HNCO enhancement by shocks in the L1157 molecular outflow
- Spitzer spectral line mapping of protostellar outflows: I. Basic data and outflow energetics
- Bipolar Molecular Outflows and Hot Cores in GLIMPSE Extended Green Objects (EGOs)
- Jets from Young Stars
- Evolution and excitation conditions of outflows in high-mass star-forming regions
- A complete model of CH+ rotational excitation including radiative and chemical pumping processes
- The clumpy structure of the chemically active L1157 outflow
- Tracing kinematical and physical asymmetries in the jet from DG Tau B
- SiO emission from low- and high-velocity shocks in Cygnus-X massive dense clumps
- Maser emission from SiO isotopologues traces the innermost 100 AU around Radio Source I in Orion BN/KL
- Chemical and kinematic structure of extremely high-velocity molecular jets in the Serpens Main star-forming region
- The CHESS survey of the L1157-B1 bow-shock: high and low excitation water vapor
- Spitzer spectral line mapping of protostellar outflows: II H2 emission in L1157
- Discovery of Extremely High Velocity "Molecular Bullets" in the HH 80-81 High-Mass Star-Forming Region
- The B1 shock in the L1157 outflow as seen at high spatial resolution
- Water in low-mass star-forming regions with Herschel (WISH-LM): High-velocity H2O bullets in L1448-MM observed with HIFI
- The CHESS survey of the L1157-B1 shock: the dissociative jet shock as revealed by Herschel--PACS
- Atomic jets from class 0 sources detected by Spitzer: the case of L1448-C
- The Herschel HIFI water line survey in the low-mass proto-stellar outflow L1448
- Shocks in dense clouds. IV. Effects of grain-grain processing on molecular line emission
- Mapping water in protostellar outflows with Herschel: PACS and HIFI observations of L1448-C
- A SiO J = 5 - 4 Survey Toward Massive Star Formation Regions
- Water emission from the chemically rich outflow L1157
- Evidence of a SiO collimated outflow from a massive YSO in IRAS 17233-3606
- Physical Structure and Dust Reprocessing in a sample of HH Jets
- SiO excitation from dense shocks in the earliest stages of massive star formation
- Revisiting the shocks in BHR71: new observational constraints and H2O predictions for Herschel
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- XII: Fragmentation and multi-scale gas kinematics in protoclusters G12.42+0.50 and G19.88-0.53
- Herschel observations of the Herbig-Haro objects HH52-54
- Water in Star and Planet Forming Regions
- On the evolution of the molecular line profiles induced by the propagation of C-shock waves
- CO abundances in a protostellar cloud: freeze-out and desorption in the envelope and outflow of L483
- Odin observations of water in molecular outflows and shocks
- L1448-MM observations by the Herschel Key program, "Dust, Ice, and Gas In Time" (DIGIT)
- Molecular Jet of IRAS 04166+2706
- The Extremely High-Velocity Outflow from the Luminous Young Stellar Object G5.89-0.39
- Physical and chemical differentiation of the luminous star-forming region W49A - Results from the JCMT Spectral Legacy Survey
- The L1157 protostellar outflow imaged with the SMA
- Multi-epoch SMA observations of the L1448C(N) protostellar SiO jet
- Broad N2H+ emission towards the protostellar shock L1157-B1
- Uniform Silicon Isotope Ratios Across the Milky Way Galaxy
- Evolution of the atomic component in protostellar outflows
- Molecules in Bipolar Outflows
- The shocked gas of the BHR71 outflow observed by Herschel: indirect evidence for an atomic jet
- A Two-Temperature Model of Magnetized Protostellar Outflows
- Shaken or stirred: the diffuse interstellar medium with exceptionally high SiO abundance
- Surveys of clumps, cores, and condensations in Cygnus-X: SMA observations of SiO (54)
- Seeds of Life in Space (SOLIS) VIII. SiO isotopic fractionation and a new insight in the shocks of L1157-B1
- H mass-velocity relationship from 3D numerical simulations of jet-driven molecular outflows