Methanol masers in NGC 253 with ALCHEMI
P. K. Humire, C. Henkel, A. Hern\'andez-G\'omez, S. Mart\'in, J., Mangum, N. Harada, S. Muller, K. Sakamoto, K. Tanaka, Y. Yoshimura, K., Nakanishi, S. M\"uhle, R. Herrero-Illana, D. S. Meier, E. Caux, R. Aladro, R., Mauersberger, S. Viti, L. Colzi, V. M. Rivilla, M. Gorski

TL;DR
This study reports the first detection of methanol masers in NGC 253's central molecular zone, revealing insights into the physical conditions and excitation mechanisms of masers in an external starburst galaxy.
Contribution
It provides the first detection of methanol masers above 84 GHz in NGC 253 and analyzes their spatial distribution and excitation conditions using high-resolution ALMA data.
Findings
Detection of methanol masers at multiple frequencies in NGC 253
Class I masers found mainly in the outskirts, not the central star-forming disk
Shocks and cloud collisions likely excite masers, while star-formation regions suppress them.
Abstract
Context: Methanol masers of Class I (collisionally-pumped) and Class II (radiatively-pumped) have been studied in great detail in our Galaxy in a variety of astrophysical environments such as shocks and star-forming regions and are helpful to analyze the properties of the dense interstellar medium. However, the study of methanol masers in external galaxies is still in its infancy. Aims: Our main goal is to search for methanol masers in the central molecular zone (CMZ; inner 500 pc) of the nearby starburst galaxy NGC 253. Methods: Covering a frequency range between 84 and 373 GHz ( = 3.6 to 0.8 mm) at high angular (1.6"27 pc) and spectral (8--9 km s) resolution with the ALMA large program ALCHEMI, we have probed different regions across the CMZ of NGC 253. In order to look for methanol maser candidates, we employed the rotation diagram method and a set of…
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