Molecule survival in magnetized protostellar disk winds. I. Chemical model and first results
arXiv:1112.3248 · doi:10.1051/0004-6361/200912861
Abstract
Molecular counterparts to atomic jets have been detected within 1000 AU of young stars. Reproducing them is a challenge for proposed ejection models. We explore whether molecules may survive in an MHD disk wind invoked to reproduce the kinematics and tentative rotation signatures of atomic jets in T Tauri stars. The coupled ionization, chemical and thermal evolution along dusty flow streamlines is computed for a prescribed MHD disk wind solution, using a method developed for magnetized shocks in the interstellar medium. Irradiation by wind-attenuated coronal X-rays and FUV photons from accretion hot spots is included, with self-shielding of H2 and CO. Disk accretion rates of 5e-6, 1e-6 and 1e-7 solar masses per year are considered, representative of low-mass young protostars (Class 0), evolved protostars (Class I) and very active T Tauri stars (Class II). The disk wind has an onion-like thermo-chemical structure, with streamlines launched from larger radii having lower temperature and ionisation, and higher H2 abundance. The coupling between charged and neutral fluids is sufficient to eject molecules from the disk out to 9 AU. The launch radius beyond which most H2 survives moves outward with evolutionary stage. CO survives in the Class 0 but is significantly photodissociated in the Class I/II. Balance between ambipolar heating and molecular cooling establishes an asymptotic temperature 700-3000 K, with cooler jets at earlier protostellar stages. Endothermic formation of H2O is efficient with abundances up to 1e-4, while CH+ and SH+ can exceed 1e-6 in the Class I/II winds. A centrifugal MHD disk wind launched from beyond 0.2-1 AU can produce molecular jets/winds up to speeds 100 km/s in young low-mass stars. The model predicts a high ratio H2/CO and an increase of molecular launch radius, temperature, and flow width as the source evolves, in agreement with current observed trends.
21 pages, 13 figures; Astronomy & Astrophysics, 23 Nov 2011
References in corpus (23)
- Which jet launching mechanism(s) in TTauri stars?
- A molecular survey of outflow gas: velocity-dependent shock chemistry and the peculiar composition of the EHV gas
- Recipes for stellar jets: results of combined optical/infrared diagnostics
- Spatially Resolved Molecular Hydrogen Emission in the Inner 200AU Environments of Classical T Tauri Stars
- Warm SiO gas in molecular bullets associated with protostellar outflows
- A highly-collimated SiO jet in the HH212 protostellar outflow
- Shells, jets, and internal working surfaces in the molecular outflow from IRAS 04166+2706
- Single peaked CO emission line profiles from the inner regions of protoplanetary disks
- The Origins of Fluorescent H2 Emission From T Tauri~Stars
- PdBI sub-arcsecond study of the SiO microjet in HH212 - Origin and collimation of Class 0 jets
- Water in low-mass star-forming regions with Herschel: HIFI spectroscopy of NGC1333
- Rotating molecular outflows: the young T Tauri star in CB26
- Submillimeter arcsecond-resolution mapping of the highly collimated protostellar jet HH 211
- HH 212: SMA Observations of a Remarkable Protostellar Jet
- Spectrally resolved pure rotational lines of water in protoplanetary disks
- Accretion and ejection properties of embedded protostars: the case of HH26, HH34 and HH46 IRS
- X-rays from jet-driving protostars and T Tauri stars
- Adaptive Optics Spectroscopy of the [Fe II] Outflows from HL Tauri and RW Aurigae
- Sub-arcsecond [FeII] spectro-imaging of the DG Tau jet: Periodic bubbles and a dusty disk wind?
- Investigating the transport of angular momentum from young stellar objects: do H2 jets from Class I YSOs rotate?
- A Micro Molecular Bipolar Outflow From HL Tau
- Spitzer spectral line mapping of the HH211 outflow
- The Challenge of Sub-Keplerian Rotation for Disk Winds
Cited by in corpus (82)
- Global simulations of protoplanetary disks with ohmic resistivity and ambipolar diffusion
- Towards a Global Evolutionary Model of Protoplanetary Disks
- Hall-effect Controlled Gas Dynamics in Protoplanetary Disks: II. Full 3D Simulations toward the Outer Disk
- Magneto-thermal Disk Wind from Protoplanetary Disks
- Global Simulations of the Inner Regions of Protoplanetary Disks with Comprehensive Disk Microphysics
- Radio Jets from Young Stellar Objects
- Tracing Slow Winds from T Tauri Stars via Low Velocity Forbidden Line Emission
- ALMA discovery of a rotating SO/SO flow in HH212. A possible MHD disk wind?
- The HH30 edge-on T Tauri star A rotating and precessing monopolar outflow scrutinized by ALMA
- Understanding the origin of the [OI] low-velocity component from T Tauri stars
- X-Shooter spectroscopy of young stellar objects: V - Slow winds in T Tauri stars
- The CALYPSO IRAM-PdBI survey of jets from Class 0 protostars. Are jets ubiquitous in young stars ?
- Outflows, infall and evolution of a sample of embedded low-mass protostars. The William Herschel Line Legacy (WILL) survey
- Global Hydromagnetic Simulations of Protoplanetary Disks with Stellar Irradiation and Simplified Thermochemistry
- The jet and the disk of the HH 212 low-mass protostar imaged by ALMA: SO and SO2 emission
- The Herschel-PACS legacy of low-mass protostars: Properties of warm and hot gas and its origin in far-UV illuminated shocks
- Characterizing magnetic field morphologies in three Serpens protostellar cores with ALMA
- [OI]63micron jets in class 0 sources detected by Herschel
- Further ALMA observations and detailed modeling of the Red Rectangle
- Water in star forming regions with Herschel (WISH) III. Far-infrared cooling lines in low-mass young stellar objects
- Physical and chemical fingerprint of protostellar disc formation
- Chemical and kinematic structure of extremely high-velocity molecular jets in the Serpens Main star-forming region
- Herschel/PACS observations of young sources in Taurus: the far-infrared counterpart of optical jets
- OH mid-infrared emission as a diagnostic of HO UV photodissociation. I. Model and application to the HH 211 shock
- A 100 au-Wide Bipolar Rotating Shell Emanating From The HH 212Protostellar Disk: A Disk Wind?
- Constraining MHD disk winds with ALMA. Apparent rotation signatures and application to HH212
- ALMA Observations of the T Tauri Binary System AS 205: Evidence for Molecular Winds and/or Binary Interactions
- Origin of the wide-angle hot H2 in DG Tauri: New insight from SINFONI spectro-imaging
- The kinematics and excitation of infrared water vapor emission from planet-forming disks: results from spectrally-resolved surveys and guidelines for JWST spectra
- JWST/NIRSpec Reveals the Nested Morphology of Disk Winds from Young Stars
- Molecule formation in dust-poor irradiated jets I. Stationary disk winds
- Dust Transport and Processing in Centrifugally Driven Protoplanetary Disk Winds
- WISH VI. Constraints on UV and X-ray irradiation from a survey of hydrides in low- to high-mass YSOs
- High SiO abundance in the HH212 protostellar jet
- GIARPS High-resolution Observations of T Tauri stars (GHOsT). II. Connecting atomic and molecular winds in protoplanetary disks
- Mapping water in protostellar outflows with Herschel: PACS and HIFI observations of L1448-C
- First Detection of Interaction between a Magnetic Disk Wind and an Episodic Jet in a Protostellar System
- JWST Observations of Young protoStars (JOYS): overview of program and early results
- Molecules with ALMA at Planet-forming Scales (MAPS) XVI: Characterizing the impact of the molecular wind on the evolution of the HD 163296 system
- The counterjet of HH 30: new light on its binary driving source
- Direct Measurement of Interstellar Extinction Toward Young Stars Using Atomic Hydrogen Lyman- Absorption
- Origin of warm and hot gas emission from low-mass protostars: Herschel-HIFI observations of CO J=16-15. I. Line profiles, physical conditions, and H2O abundance
- Modeling the CO outflow in DG Tau B: Swept-up shells versus perturbed MHD disk wind
- JWST Observations of Young protoStars (JOYS). HH 211: the textbook case of a protostellar jet and outflow
- Interaction between a pulsating jet and a surrounding disk wind. A hydrodynamical perspective
- JWST study of the DG Tau B disk wind candidate: I -- Overview and Nested H/CO outflows
- Photoevaporation of protoplanetary discs with PLUTO+PRIZMO I. Lower X-ray-driven mass-loss rates due to enhanced cooling
- Non-Equilibrium Chemistry and Destruction of CO by X-ray Flares
- ALMA resolves the remarkable molecular jet and rotating wind in the extremely radio-quiet galaxy NGC 1377
- Water in star-forming regions with Herschel (WISH) V. The physical conditions in low-mass protostellar outflows revealed by multi-transition water observations
- Molecule survival in magnetized protostellar disk winds. II. Predicted H2O line profiles versus Herschel/HIFI observations
- HST FUV imaging of DG Tau: Fluorescent molecular hydrogen emission from the wide angle outflow
- A JWST/MIRI analysis of the ice distribution and PAH emission in the protoplanetary disk HH 48 NE
- Atomic jet from SMM1 (FIRS1) in Serpens uncovers non-coeval binary companion
- The Winds from HL Tau
- Launching the asymmetric bipolar jet of DO Tau
- Physical properties of accretion shocks toward the Class I protostellar system Oph-IRS 44
- Steady Wind-Blown Cavities within Infalling Rotating Envelopes: Application to the Broad Velocity Component in Young Protostars
- Interpreting molecular hydrogen and atomic oxygen line emission of T Tauri disks with photoevaporative disk-wind models
- ALMA view of the L1448-mm protostellar system on disk scales: CHOH and HCN as new disk wind tracers
- The Asymmetric Bipolar Fe II Jet and H2 Outflow of TMC1A Resolved with JWST's NIRSpec IFU
- Molecules in the CepE-mm jet: evidence for shock-driven photochemistry?
- MHD simulations of the formation and propagation of protostellar jets to observational length scales
- On fan-shaped cold MHD winds from Keplerian accretion discs
- Face to phase with RU Lupi
- Magnetic disk winds in protoplanetary disks: Description of the model and impact on global disk evolution
- Spatially resolved H_2 emission from a very low-mass star
- MHD Modeling of a Disk-Wind from a High-Mass Protobinary: the case of Orion Source I
- Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): Scattered light detection of a possible disk wind in RY Tau
- Velocity-resolved hot water emission detected toward HL Tau with the Submillimeter Array
- Magnetically driven winds from accretion disks in post-asymptotic giant branch binaries
- Radiative Nonideal MHD Simulations of Inner Protoplanetary Disks: Temperature Structures, Asymmetric Winds, and Episodic Surface Accretion
- A kinematical study of the launching region of the blueshifted HH 46/47 outflow with SINFONI K-band observations
- Chemical modeling of internal photon-dominated regions surrounding deeply embedded HC/UCHII regions
- Proper Motions of Young Stellar Outflows in the Mid-Infrared with Spitzer. II. HH 377/Cep E
- Revealing Ionization Conditions of Sz 102 with Spatially Resolved [Ne III] Microjets
- Photoevaporation Can Reproduce Extended Emission from Protoplanetary Disks Imaged by JWST MIRI
- Molecular gas properties in young stellar clusters with a suppressed star cluster wind
- Jet formation in post-AGB binaries: Confronting cold magnetohydrodynamic disc wind wind models with observations
- Tree-based solvers for adaptive mesh refinement code FLASH -- IV: An X-ray radiation scheme to couple discrete and diffuse X-ray emission sources to the thermochemistry of the interstellar medium
- The Dispersal of Planet-forming discs: Theory confronts Observations
- MHD disc winds can reproduce fast disc dispersal and the correlation between accretion rate and disc mass in Lupus