A high resolution study of complex organic molecules in hot cores


Autoria(s): Vita, Serena; Codella, Claudio; Beltran, Maria T.; Fontani, Francesco; Woods, Paul
Data(s)

01/10/2014

Resumo

We present the results of a line identification analysis using data from the IRAM Plateau de Bure Inferferometer, focusing on six massive star-forming hot cores: G31.41+0.31, G29.96-0.02, G19.61-0.23, G10.62-0.38, G24.78+0.08A1 and G24.78+0.08A2. We identify several transitions of vibrationally excited methyl formate (HCOOCH$_3$) for the first time in these objects as well as transitions of other complex molecules, including ethyl cyanide (C$_2$H$_5$CN), and isocyanic acid (HNCO). We also postulate a detection of one transition of glycolaldehyde (CH$_2$(OH)CHO) in two new hot cores. We find G29.96-0.02, G19.61-0.23, G24.78+0.08A1 and 24.78+0.08A2 to be chemically very similar. G31.41+0.31, however, is chemically different: it manifests a larger chemical inventory and has significantly larger column densities. We suggest that it may represent a different evolutionary stage to the other hot cores in the sample, or it may surround a star with a higher mass. We derive column densities for methyl formate in G31.41+0.31, using the rotation diagram method, of $\times$10$^{17}$ cm$^{-2}$ and a T$_{rot}$ of $\sim$170 K. For G29.96-0.02, G24.78+0.08A1 and G24.78+0.08A2, glycolaldehyde, methyl formate and methyl cyanide all seem to trace the same material and peak at roughly the same position towards the dust emission peak. For G31.41+0.31, however, glycolaldehyde shows a different distribution to methyl formate and methyl cyanide and seems to trace the densest, most compact inner part of hot cores.

Identificador

http://pure.qub.ac.uk/portal/en/publications/a-high-resolution-study-of-complex-organic-molecules-in-hot-cores(5a16e774-e4a9-4aed-a820-07c1e327115e).html

http://dx.doi.org/10.1093/mnras/stu1363

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Hannah Calcutt , Vita , S , Codella , C , Beltran , M T & Fontani , F 2014 , ' A high resolution study of complex organic molecules in hot cores ' Monthly Notices of the Royal Astronomical Society , vol 443 , no. 4 , pp. 3157-3173 . DOI: 10.1093/mnras/stu1363

Tipo

article