English

Volume density structure of the NGC253 CMZ through ALCHEMI excitation analysis

Astrophysics of Galaxies 2023-11-22 v1

Abstract

We present a spatially-resolved excitation analysis for the central molecular zone (CMZ) of the starburst galaxy NGC 253 using the data from the ALMA Large program ALCHEMI, whereby we explore parameters distinguishing NGC 253 from the quiescent Milky Way's Galactic Center (GC). Non-LTE analyses employing a hierarchical Bayesian framework are applied to Band 3-7 transitions from nine molecular species to delineate the position-position-velocity distributions of column density (NH2N_\mathrm{H_2}), volume density (nH2n_\mathrm{H_2}), and temperature (TkinT_\mathrm{kin}) at 27 pc resolution. Two distinct components are detected: a low-density component with (nH2, Tkin)(103.3 cm3,85K)(n_\mathrm{H_2},\ T_\mathrm{kin})\sim(10^{3.3}\ \mathrm{cm}^{-3}, 85 K) and a high-density component with (nH2, Tkin)(104.4 cm3,110 K)(n_\mathrm{H_2},\ T_\mathrm{kin})\sim (10^{4.4}\ \mathrm{cm}^{-3}, 110\ \mathrm{K}), separated at nH2103.8 cm3n_\mathrm{H_2}\sim10^{3.8}\ \mathrm{cm}^{-3}. NGC 253 has 10\sim10 times the high-density gas mass and 3\sim3 times the dense-gas mass fraction of the GC. These properties are consistent with their HCN/CO ratio but cannot alone explain the factor of 30\sim30 difference in their star formation efficiencies (SFEs), contradicting the dense-gas mass to star formation rate scaling law. The nH2n_\mathrm{H_2} histogram toward NGC 253 exhibits a shallow declining slope up to nH2106 cm3n_\mathrm{H_2}\sim10^6\ \mathrm{cm}^{-3}, while that of the GC steeply drops in nH2104.5 cm3n_\mathrm{H_2}\gtrsim10^{4.5}\ \mathrm{cm}^{-3} and vanishes at 105 cm310^5\ \mathrm{cm}^{-3}. Their dense-gas mass fraction ratio becomes consistent with their SFEs when the threshold nH2n_\mathrm{H_2} for the dense gas is taken at 104.2\mbox4.6 cm3\sim 10^{4.2\mbox{-}4.6}\ \mathrm{cm}^{-3}. The rich abundance of gas above this density range in the NGC 253 CMZ, or its scarcity in the GC, is likely to be the critical difference characterizing the contrasting star formation in the centers of the two galaxies.

Keywords

Cite

@article{arxiv.2311.12106,
  title  = {Volume density structure of the NGC253 CMZ through ALCHEMI excitation analysis},
  author = {Kunihiko Tanaka and Jeffrey G. Mangum and Serena Viti and Sergio Martin and Nanase Harada and Kazushi Sakamoto and Sebastien Muller and Yuki Yoshimura and Kouichiro Nakanishi and Ruben Herrero Illana and Kimberly L. Emig and S. Muhle and Hiroyuki Kaneko and Tomoka Tosaki and Erica Behrens and Victor M. Rivilla and Laura Colzi and Yuri Nishimura and P. K. Humire and Mathilde Bouvier and Ko-Yun Huang and Joshua Butterworth and David S. Meier and Paul P. van der Werf},
  journal= {arXiv preprint arXiv:2311.12106},
  year   = {2023}
}

Comments

49 pages, 27 figures, 7 tables, accepted for publication in the Astrophysical Journal