Molecular gas in the star-forming region IRAS 08589-4714

Aims. We present an analysis of the region IRAS 08589-4714 with the aim of characterizing the molecular environment. Methods. We observed the <SUP>12</SUP>CO(3-2), <SUP>13</SUP>CO(3-2), C<SUP>18</SUP>O(3-2), HCO<SUP>+</SUP>(3-2), and HCN(3-2) molecular...

Descripción completa

Detalles Bibliográficos
Autores: Saldaño, Hugo P., Vasquez, Javier, Cappa, Cristina Elisabet, Gómez, M., Duronea, Nicolás Urbano, Rubio, Mónica
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2016
País:Argentina
Institución:Universidad Nacional de La Plata
Repositorio:SEDICI (UNLP)
Idioma:inglés
OAI Identifier:oai:sedici.unlp.edu.ar:10915/85788
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/85788
Access Level:acceso abierto
Palabra clave:Ciencias Astronómicas
Circumstellar matter
ISM: individual objects: IRAS 08589-4714
ISM: jets and outflows
ISM: molecules
Stars: formation
Stars: massive
id AR_ebfa76bf5657e541a09a9ebd30b66ae2
oai_identifier_str oai:sedici.unlp.edu.ar:10915/85788
network_acronym_str AR
network_name_str Argentina
spelling Molecular gas in the star-forming region IRAS 08589-4714 Saldaño, Hugo P. Vasquez, Javier Cappa, Cristina Elisabet Gómez, M. Duronea, Nicolás Urbano Rubio, Mónica Ciencias Astronómicas Circumstellar matter ISM: individual objects: IRAS 08589-4714 ISM: jets and outflows ISM: molecules Stars: formation Stars: massive Aims. We present an analysis of the region IRAS 08589-4714 with the aim of characterizing the molecular environment. Methods. We observed the <SUP>12</SUP>CO(3-2), <SUP>13</SUP>CO(3-2), C<SUP>18</SUP>O(3-2), HCO<SUP>+</SUP>(3-2), and HCN(3-2) molecular lines in a region of 150″ × 150″, centered on the IRAS source, to analyze the distribution and characteristics of the molecular gas linked to the IRAS source. Results. The molecular gas distribution reveals a molecular clump that is coincident with IRAS 08589-4714 and with a dust clump detected at 1.2 mm. The molecular clump is 0.45 pc in radius and its mass and H<SUB>2</SUB> volume density are 310 M⊙ and 1.2 × 10<SUP>4</SUP> cm<SUP>-3</SUP>, respectively. Two overdensities were identified within the clump in HCN(3-2) and HCO<SUP>+</SUP>(3-2) lines. A comparison of the LTE and virial masses suggests that the clump is collapsing in regions that harbor young stellar objects. An analysis of the molecular lines suggests that they are driving molecular outflows. Facultad de Ciencias Astronómicas y Geofísicas Instituto Argentino de Radioastronomía http://sedici.unlp.edu.ar/handle/10915/85788
title Molecular gas in the star-forming region IRAS 08589-4714
spellingShingle Molecular gas in the star-forming region IRAS 08589-4714
Saldaño, Hugo P.
Ciencias Astronómicas
Circumstellar matter
ISM: individual objects: IRAS 08589-4714
ISM: jets and outflows
ISM: molecules
Stars: formation
Stars: massive
title_short Molecular gas in the star-forming region IRAS 08589-4714
title_full Molecular gas in the star-forming region IRAS 08589-4714
title_fullStr Molecular gas in the star-forming region IRAS 08589-4714
title_full_unstemmed Molecular gas in the star-forming region IRAS 08589-4714
title_sort Molecular gas in the star-forming region IRAS 08589-4714
author Saldaño, Hugo P.
author_facet Saldaño, Hugo P.
Vasquez, Javier
Cappa, Cristina Elisabet
Gómez, M.
Duronea, Nicolás Urbano
Rubio, Mónica
author_role author
author2 Vasquez, Javier
Cappa, Cristina Elisabet
Gómez, M.
Duronea, Nicolás Urbano
Rubio, Mónica
author2_role author
author
author
author
author
topic Ciencias Astronómicas
Circumstellar matter
ISM: individual objects: IRAS 08589-4714
ISM: jets and outflows
ISM: molecules
Stars: formation
Stars: massive
topic_facet Ciencias Astronómicas
Circumstellar matter
ISM: individual objects: IRAS 08589-4714
ISM: jets and outflows
ISM: molecules
Stars: formation
Stars: massive
description Aims. We present an analysis of the region IRAS 08589-4714 with the aim of characterizing the molecular environment. Methods. We observed the <SUP>12</SUP>CO(3-2), <SUP>13</SUP>CO(3-2), C<SUP>18</SUP>O(3-2), HCO<SUP>+</SUP>(3-2), and HCN(3-2) molecular lines in a region of 150″ × 150″, centered on the IRAS source, to analyze the distribution and characteristics of the molecular gas linked to the IRAS source. Results. The molecular gas distribution reveals a molecular clump that is coincident with IRAS 08589-4714 and with a dust clump detected at 1.2 mm. The molecular clump is 0.45 pc in radius and its mass and H<SUB>2</SUB> volume density are 310 M⊙ and 1.2 × 10<SUP>4</SUP> cm<SUP>-3</SUP>, respectively. Two overdensities were identified within the clump in HCN(3-2) and HCO<SUP>+</SUP>(3-2) lines. A comparison of the LTE and virial masses suggests that the clump is collapsing in regions that harbor young stellar objects. An analysis of the molecular lines suggests that they are driving molecular outflows.
publishDate 2016
format article
status_str publishedVersion
url http://sedici.unlp.edu.ar/handle/10915/85788
language eng
eu_rights_str_mv openAccess
institution UNLP
collection SEDICI (UNLP)
reponame_str SEDICI (UNLP)
instname_str Universidad Nacional de La Plata
_version_ 1878404018375491584
publishDateSort 2016
author_browse Cappa, Cristina Elisabet
Duronea, Nicolás Urbano
Gómez, M.
Rubio, Mónica
Saldaño, Hugo P.
Vasquez, Javier
score 6,9303427