Massive stars form deeply embedded in dense molecular gas, which they stir and heat up and ionize. During an early phase, the ionization is confined to hypercompact Hii regions, and the stellar radiation is entirely absorbed by dust, giving rise to a hot molecular core. To investigate the innermost structure of such high-mass star-forming regions, we observed vibrationally excited HCN (via the direct âââ-type transition of v2 = 1, ÃâJ = 0, J = 13, which lies 1400 K above ground) toward the massive hot molecular cores G10.47+0.03, SgrB2-N, and SgrB2-M with the Very Large Array (VLA) at 7 mm, reaching a resolution of about 1000 AU (0.1''). We detect the line both in emission and in absorption against Hii regions. The latter allows to ...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
Aims. Our goal is to study molecular gas properties in nuclei and large scale outflows/winds from ac...
Massive stars form deeply embedded in dense molecular gas, which they stir and heat up and ionize. D...
Massive stars form deeply embedded in dense molecular gas, which they stir and heat up and ionize. D...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
We report the detection of surprisingly strong HCN(J = 6â5), HNC(J = 6â5), and HCO+(J = 6â5) e...
We present single dish and interferometric maps of several rotational transitions of HC3N vibrationa...
Aims. Our goal is to study molecular gas properties in nuclei and large scale outflows/winds from ac...
Hot molecular cores are a short-lived phase of massive star formation: the massive stars have heated...
Hot molecular cores are a short-lived phase of massive star formation: the massive stars have heated...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
Aims. Our goal is to study molecular gas properties in nuclei and large scale outflows/winds from ac...
Massive stars form deeply embedded in dense molecular gas, which they stir and heat up and ionize. D...
Massive stars form deeply embedded in dense molecular gas, which they stir and heat up and ionize. D...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Context. The physical structure of hot molecular cores, where forming massive stars have heated up d...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
We report the detection of surprisingly strong HCN(J = 6â5), HNC(J = 6â5), and HCO+(J = 6â5) e...
We present single dish and interferometric maps of several rotational transitions of HC3N vibrationa...
Aims. Our goal is to study molecular gas properties in nuclei and large scale outflows/winds from ac...
Hot molecular cores are a short-lived phase of massive star formation: the massive stars have heated...
Hot molecular cores are a short-lived phase of massive star formation: the massive stars have heated...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
Published in: Astrophys. J. 553 (2001) L63-L68 citations recorded in [Science Citation Index] Abstra...
Aims. Our goal is to study molecular gas properties in nuclei and large scale outflows/winds from ac...