Evolutionary view through the starless cores in Taurus: deuteration in TMC 1-C and TMC 1-CP
D. Navarro-Almaida, A. Fuente, L. Majumdar, V. Wakelam, P. Caselli, P., Rivi\`ere-Marichalar, S. P. Trevi\~no-Morales, S. Cazaux, I. Jim\'enez-Serra,, C. Kramer, A. Chac\'on-Tanarro, J. M. Kirk, D. Ward-Thompson, M. Tafalla

TL;DR
This study investigates the chemical and physical evolution of starless cores TMC 1-C and TMC 1-CP in Taurus, revealing their different evolutionary stages through multi-molecular observations and chemical modeling.
Contribution
It provides a detailed multi-transitional observational analysis combined with chemical modeling to determine the evolutionary stages of two similar starless cores.
Findings
TMC 1-C is in a later evolutionary stage (~1 Myr) showing signs of star formation onset.
TMC 1-CP is in an earlier stage, possibly due to recent formation or magnetic support slowing collapse.
Chemical diagnostics differentiate the cores' evolutionary phases based on molecular abundances.
Abstract
The chemical and physical evolution of starless and pre-stellar cores are of paramount importance to understanding the process of star formation. The Taurus Molecular Cloud cores TMC 1-C and TMC 1-CP share similar initial conditions and provide an excellent opportunity to understand the evolution of the pre-stellar core phase. We investigated the evolutionary stage of starless cores based on observations towards the prototypical dark cores TMC 1-C and TMC 1-CP, mapping them in the CS , CS , CS , DCN , DCN , DNC , DNC , DNC , DNC , NH , and ND transitions. We performed a multi-transitional study of CS and its isotopologs, DCN, and DNC lines to characterize the physical…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Molecular Spectroscopy and Structure · Astro and Planetary Science
