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3-D CMZ I: Central Molecular Zone Overview

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arxiv 2410.17334 v2 pith:2J6USTHL submitted 2024-10-22 astro-ph.GA astro-ph.SR

classification astro-ph.GAastro-ph.SR
keywords innermoleculardustgalaxydensetimescentralclouds
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

The Central Molecular Zone (CMZ) is the largest reservoir of dense molecular gas in the Galaxy and is heavily obscured in the optical and near-IR. We present an overview of the far-IR dust continuum, where the molecular clouds are revealed, provided by Herschel in the inner 40\deg($|l| <$ 20\deg) of the Milky Way with a particular focus on the CMZ. We report a total dense gas ($N$(H$_2$) $> 10^{23}$ cm$^{-2}$) CMZ mass of M=$2\substack{+2 \\ -1} \times 10^7$ M$_{\odot}$ and confirm that there is a highly asymmetric distribution of dense gas, with about 70-75% at positive longitudes. We create and publicly release complete fore/background-subtracted column density and dust temperature maps in the inner 40\deg ($|l| <$ 20\deg) of the Galaxy. We find that the CMZ clearly stands out as a distinct structure, with an average mass per longitude that is at least $3\times$ higher than the rest of the inner Galaxy contiguously from 1.8\deg $> \ell >$ -1.3\deg. This CMZ extent is larger than previously assumed, but is consistent with constraints from velocity information. The inner Galaxy's column density peaks towards the SgrB2 complex with a value of about 2 $\times$ 10$^{24}$ cm$^{-2}$, and typical CMZ molecular clouds are about N(H$_2$)=10$^{23}$ cm$^{-2}$. Typical CMZ dust temperatures range from about $12-35$ K with relatively little variation. We identify a ridge of warm dust in the inner CMZ that potentially traces the base of the northern Galactic outflow seen with MEERKAT.

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Forward citations

Cited by 5 Pith papers

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    astro-ph.GA 2025-01 conditional novelty 6.0 of 10

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    X-ray echo tomography shows the Stone cloud in the Galactic center is a diffuse cloud with dense clumps, extending about 1.7 pc along the line of sight.

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    Dense cores in three CMZ clouds are pressure-confined and show Salpeter-like core mass functions when temperatures are measured rather than assumed.

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  5. Chemistry of Dark Molecular Clouds

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    A comprehensive review arguing that the chemically rich cores TMC-1 CP and L1544 are representative molecular-cloud laboratories, and that complex organic molecule production is largely insensitive to metallicity.

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