English

Solid and Gaseous Methane in IRAS 23385+6053 as seen with Open JWST Data

Astrophysics of Galaxies 2024-12-24 v1

Abstract

We present a new description of the 7.7~μ\mum region towards the high-mass star-forming region IRAS 23385+6053 taken from open James Webb Space Telescope Mid-Infrared Instrument Medium Resolution Spectrometer (JWST MIRI/MRS) data. This area is commonly attributed to the ν4\nu_4 deformation mode of methane ice. For the first time gaseous and solid methane were analyzed simultaneously in IRAS 23385+6053. The band at 7.58--7.8 μ\mum (1320--1280 cm1^{-1}) is interpreted as a wide solid absorption methane feature overlapped by the sharp features of the methane emission. We report the detection of gaseous methane and estimate its emitting area radius~RR, temperature~TT and column density~NN as R=2940R=2940~au, T=10311+13T=103^{+13}_{-11}~K, and N=0.78+6.180.64×1017N=0.78_{+6.18}^{-0.64}\times10^{17}~cm2^{-2}, correspondingly. The ice content was analyzed with the laboratory spectra dataset of methane in different molecular environments obtained on the Ice Spectroscopy Experimental Aggregate (ISEAge). We were able to describe the wide feature of solid methane with the following laboratory spectra: CH4_4~:~CO2_2~=~1~:~5 (at 27.410.8+6.027.4^{+6.0}_{-10.8}~K) and CH4_4~:~H2_2O~=~1~:~10 (at 8.41.7+16.48.4^{+16.4}_{-1.7}~K) deposited at 6.7~K and warmed up at a rate of 0.5 K per minute. The derived column densities are NCH4N_{\text{CH}_4}(CO2_2)~=~2.970.57+0.37×10172.97^{+0.37}_{-0.57}\times10^{17}~cm2^{-2} and NCH4N_{\text{CH}_4}(H2_2O)~=~1.020.27+0.46×10171.02^{+0.46}_{-0.27}\times10^{17}~cm2^{-2}. According to the best fit solid methane is mostly surrounded by CO2_2 rather than H2_2O. The residuals analysis reveals the unassigned region at 1283--1297~cm1^{-1} (7.71--7.79~μ\mum) which is tentatively assigned to nitrous oxide (N2_2O) in various environments.

Keywords

Cite

@article{arxiv.2412.17028,
  title  = {Solid and Gaseous Methane in IRAS 23385+6053 as seen with Open JWST Data},
  author = {Ruslan Nakibov and Varvara Karteyeva and Igor Petrashkevich and Maksim Ozhiganov and Mikhail Medvedev and Anton Vasyunin},
  journal= {arXiv preprint arXiv:2412.17028},
  year   = {2024}
}

Comments

12 pages, 6 figures, 1 table, accepted to ApJL