Similar levels of deuteration in the pre-stellar core L1544 and the protostellar core HH211
K. Giers, S. Spezzano, P. Caselli, E. Wirstr\"om, O. Sipil\"a, J. E., Pineda, E. Redaelli, C. T. Bop, F. Lique

TL;DR
This study compares deuterium fractionation in pre-stellar and protostellar cores, finding similar deuteration levels suggesting environmental conditions have limited impact on core chemistry during early star formation.
Contribution
It provides new observational data and modeling of deuteration in two different cores, highlighting the similarity in deuteration levels despite different environments.
Findings
High deuteration in CCH (~10%) in both cores
Moderate deuteration in HCN and HNC (~5-8%)
Deuteration levels are similar, indicating environmental effects are minimal
Abstract
In the centre of pre-stellar cores, deuterium fractionation is enhanced due to the low temperatures and high densities. Therefore, the chemistry of deuterated molecules can be used to study the earliest stages of star formation. We analyse the deuterium fractionation of simple molecules, comparing the level of deuteration in the envelopes of the pre-stellar core L1544 in Taurus and the protostellar core HH211 in Perseus. We used single-dish observations of CCH, HCN, HNC, HCO, and their C-, O- and D-bearing isotopologues, detected with the Onsala 20m telescope. We derived the column densities and the deuterium fractions of the molecules. Additionally, we used radiative transfer simulations and results from chemical modelling to reproduce the observed molecular lines. We used new collisional rate coefficients for HNC, HNC, DNC, and DCN that consider the hyperfine…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Molecular Spectroscopy and Structure · Atmospheric Ozone and Climate
