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Water Maser Zeeman Splitting in the Ionized Jet IRAS 19035+0641 A
by
Rodríguez, Tatiana M.
, Sarma, Anuj P.
, Araya, Esteban D.
, Hofner, Peter
, Momjian, Emmanuel
in
Continuum radiation
/ Elongated structure
/ Poster Paper
/ Protostars
/ Splitting
/ Star formation
/ Water masers
/ Zeeman effect
2022
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Water Maser Zeeman Splitting in the Ionized Jet IRAS 19035+0641 A
by
Rodríguez, Tatiana M.
, Sarma, Anuj P.
, Araya, Esteban D.
, Hofner, Peter
, Momjian, Emmanuel
in
Continuum radiation
/ Elongated structure
/ Poster Paper
/ Protostars
/ Splitting
/ Star formation
/ Water masers
/ Zeeman effect
2022
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Water Maser Zeeman Splitting in the Ionized Jet IRAS 19035+0641 A
by
Rodríguez, Tatiana M.
, Sarma, Anuj P.
, Araya, Esteban D.
, Hofner, Peter
, Momjian, Emmanuel
in
Continuum radiation
/ Elongated structure
/ Poster Paper
/ Protostars
/ Splitting
/ Star formation
/ Water masers
/ Zeeman effect
2022
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Water Maser Zeeman Splitting in the Ionized Jet IRAS 19035+0641 A
Journal Article
Water Maser Zeeman Splitting in the Ionized Jet IRAS 19035+0641 A
2022
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Overview
A key ingredient in the earliest evolutionary phase of high-mass (M>8 M⊙) star formation (HMSF) is the presence of a jet/outflow system. To study its role in HMSF, we have carried out high resolution (0.1″) VLA K-band (18-26.5 GHz) observations toward IRAS 19035+0641 A, identified as a high-mass protostellar jet candidate based on previous cm continuum data. Our observations resolve the continuum emission into an elongated structure in the NE-SW direction, confirming that the K-band continuum arises from an ionized jet. Furthermore, we detected several 22.2 GHz H2O maser spots aligned in a direction consistent with the jet axis. Zeeman splitting was detected in the strongest maser spot. In this paper, we present our results and discuss the implications of our findings.
Publisher
Cambridge University Press
Subject
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