We investigate the deuteration of methanol towards the high-mass star forming region NGC 7538-IRS1. We have carried out a multi-transition study of CH3OH, 13CH3OH and of the deuterated fllavors, CH2DOH and CH3OD, between 1.0--1.4 mm with the IRAM-30~m antenna. In total, 34 13CH3OH, 13 CH2DOH lines and 20 CH3OD lines spanning a wide range of upper-state energies (Eup) were detected. From the detected transitions, we estimate that the measured D/H does not exceed 1%, with a measured CH2DOH/CH3OH and CH3OD/CH3OH of about (32±8)×10−4 and (10±4)×10−4, respectively. This finding is consistent with the hypothesis of a short-time scale formation during the pre-stellar phase. We find a relative abundance ratio CH2DOH/CH3OD of 3.2 ± 1.5. This result is consistent with a statistical deuteration. We cannot exclude H/D exchanges between water and methanol if water deuteration is of the order 0.1%, as suggested by recent Herschel observations.
@article{arxiv.1905.09798,
title = {Deuterated methanol toward NGC 7538-IRS1},
author = {Juan Ospina-Zamudio and Cécile Favre and Marina Kounkel and Li-Hong Xu and Justin Neill and Bertrand Lefloch and Alexandre Faure and Edwin Bergin and Davide Fedele and Lee Hartmann},
journal= {arXiv preprint arXiv:1905.09798},
year = {2019}
}
Comments
Accepted for publication in Astronomy & Astrophysics