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June 26, 20240 citationsOpen Access

A 3 mm spectral line study of the Central Molecular Zone infrared dark cloud G1.75-0.08

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OMO. MiettinenMSM. Santander-García

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Abstract

Infrared dark clouds (IRDCs) are fruitful objects to study the fragmentation of interstellar filaments and initial conditions and early stages of high-mass (M>8 M_) star formation. We used the Yebes 40 m and IRAM 30 m radio telescopes to carry out the first single-pointing spectral line observations towards the IRDC G1. 75-0. 08, which is a filamentary Central Molecular Zone (CMZ) cloud. Our aim is to reach an improved understanding of the gas kinematics and dynamical state of the cloud and its two clumps that we call clumps A and B. We also aim to determine the fractional abundances of the molecules detected at 3 mm towards G1. 75-0. 08. We detected HNCO (J₊䂯, \, ₊₂=4₀, \, ₄-3₀, \, ₃), HCN (J=1-0), and HCO^+ (J=1-0) towards both clumps. The N₂H^+ (J=1-0) line was detected only in clump B, while N₂D^+ (J=1-0) was not detected at all. The HCN and HNCO spectra exhibit two velocity components. The abundances of the detected species are comparable to those in other IRDCs. An upper limit to the N₂D^+/N₂H^+ deuterium fraction of 2). Our finding that G1. 75-0. 08 is strongly subcritical is atypical compared to the general population of Galactic filamentary clouds. The cloud's location in the CMZ might affect the cloud kinematics similar to what has been found for the Brick IRDC, and the cloud's dynamical state might also be the result of the turbulent motions or shear and tidal forces in the CMZ. Because the target clumps are dark at 70 m and massive (several 10³ M_), they can be considered candidates for being high-mass starless (but not prestellar) clumps.

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Miettinen et al. (2024) studied this question.

synapsesocial.com/papers/68e634cdb6db6435875c63aehttps://doi.org/10.48550/arxiv.2406.18478
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