Redshifted methanol absorption tracing infall motions of high-mass star formation regions

Author:

Yang W. J.ORCID,Menten K. M.,Yang A. Y.ORCID,Wyrowski F.,Gong Y.ORCID,Ellingsen S. P.ORCID,Henkel C.ORCID,Chen X.,Xu Y.

Abstract

Context. Gravitational collapse is one of the most important processes in high-mass star formation. Compared with the classic blue-skewed profiles, redshifted absorption against continuum emission is a more reliable method to detect inward motions within high-mass star formation regions. Aims. We aim to test if methanol transitions can be used to trace infall motions within high-mass star formation regions. Methods. Using the Effelsberg-100 m, IRAM-30 m, and APEX-12 m telescopes, we carried out observations of 37 and 16 methanol transitions towards two well-known collapsing dense clumps, W31C (G10.6−0.4) and W3(OH), to search for redshifted absorption features or inverse P-Cygni profiles. Results. Redshifted absorption is observed in 14 and 11 methanol transitions towards W31C and W3(OH), respectively. The infall velocities fitted from a simple two-layer model agree with previously reported values derived from other tracers, suggesting that redshifted methanol absorption is a reliable tracer of infall motions within high-mass star formation regions. Our observations indicate the presence of large-scale inward motions, and the mass infall rates are roughly estimated to be ≳10−3 M yr−1, which supports the global hierarchical collapse and clump-fed scenario. Conclusions. With the aid of bright continuum sources and the overcooling of methanol transitions leading to enhanced absorption, redshifted methanol absorption can trace infall motions within high-mass star formation regions hosting bright H II regions.

Publisher

EDP Sciences

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. ATLASGAL: 3 mm class I methanol masers in high-mass star formation regions;Astronomy & Astrophysics;2023-07

2. A global view on star formation: The GLOSTAR Galactic plane survey;Astronomy & Astrophysics;2022-10

3. ATLASGAL – evolutionary trends in high-mass star formation;Monthly Notices of the Royal Astronomical Society;2021-12-04

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