About
Contact
Help
Sending publications
How to publish
Advanced Search
View Item 
  •   Home
  • Facultad de Ciencias Físicas y Matemáticas
  • Artículos de revistas
  • View Item
  •   Home
  • Facultad de Ciencias Físicas y Matemáticas
  • Artículos de revistas
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Browse byCommunities and CollectionsDateAuthorsTitlesSubjectsThis CollectionDateAuthorsTitlesSubjects

My Account

Login to my accountRegister
Biblioteca Digital - Universidad de Chile
Revistas Chilenas
Repositorios Latinoamericanos
Tesis LatinoAmericanas
Tesis chilenas
Related linksRegistry of Open Access RepositoriesOpenDOARGoogle scholarCOREBASE
My Account
Login to my accountRegister

Spatially resolved near-infrared spectroscopy of the massive star-forming region IRAS 19410+2336

Artículo
Thumbnail
Open/Download
IconMartin_Hernandez_NL.pdf (485.0Kb)
Publication date
2008-10
Metadata
Show full item record
Cómo citar
Martín Hernández, N. L.
Cómo citar
Spatially resolved near-infrared spectroscopy of the massive star-forming region IRAS 19410+2336
.
Copiar
Cerrar

Author
  • Martín Hernández, N. L.;
  • Bik, A.;
  • Puga, E.;
  • Nürnberger, D. E. A.;
  • Bronfman Aguiló, Leonardo;
Abstract
Aims. IRAS 19410+2336 is a young massive star forming region with an intense outflow activity. Outflows are frequently studied in the near-infrared (NIR) since the H2 emission in this wavelength range often traces the shocked molecular gas. However, the mechanisms behind the H2 emission detected in IRAS 19410+2336 have not been clarified yet. We present here spatially resolved NIR spectroscopy which allows us to verify whether the H2 emission originates from thermal emission in shock fronts or from fluorescence excitation by non-ionizing UV photons. Moreover, NIR spectroscopy also offers the possibility of studying the characteristics of the putative driving source(s) of the H2 emission by the detection of photospheric and circumstellar spectral features, and of the environmental conditions (e.g. extinction). Methods. We obtained long-slit, intermediate-resolution, NIR spectra of IRAS 19410+2336 using LIRIS, the NIR imager/ spectrographer mounted on the 4.2m William Herschel Telescope. As a complement, we also obtained J, H and Ks images with the Las Campanas 2.5m Du Pont Telescope, and archival mid-infrared (MIR) Spitzer images at 3.6, 4.5, 5.8 and 8.0 μm. Results. We confirm the shocked nature of the H2 emission, with an excitation temperature of about 2000 K, based on the analysis of relevant H2 line ratios, ortho-to-para ratios and excitation diagrams. We have also identified objects with very different properties and evolutionary stages in IRAS 19410+2336. The most massive source at millimeter wavelengths, mm1, with a mass of a few tens of solar masses, has a bright NIR (and MIR) counterpart. This suggests that emission – probably coming through a cavity created by one of the outflows present in the region, or from the outflow cavity itself – is leaking at these wavelengths. The second most massive millimeter source, mm2, is only detected at λ >∼ 6 μm, suggesting that it could be a high-mass protostar still in its main accretion phase. The NIR spectra of some neighboring sources show CO first-overtone bandhead emission which is associated with neutral material located in the inner regions of the circumstellar environment of YSOs.
Patrocinador
This work has also been partially funded by the Spanish MCyT under project AYA2004-07466. LB acknowledges support by Chilean FONDAP Center of Astrophysics 15010003
Identifier
URI: https://repositorio.uchile.cl/handle/2250/125248
ISSN: 0004-6361
Quote Item
ASTRONOMY & ASTROPHYSICS Volume: 489 Issue: 1 Pages: 229-243 Published: OCT 2008
Collections
  • Artículos de revistas
xmlui.footer.title
31 participating institutions
More than 73,000 publications
More than 110,000 topics
More than 75,000 authors
Published in the repository
  • How to publish
  • Definitions
  • Copyright
  • Frequent questions
Documents
  • Dating Guide
  • Thesis authorization
  • Document authorization
  • How to prepare a thesis (PDF)
Services
  • Digital library
  • Chilean academic journals portal
  • Latin American Repository Network
  • Latin American theses
  • Chilean theses
Dirección de Servicios de Información y Bibliotecas (SISIB)
Universidad de Chile

© 2020 DSpace
  • Access my account