Seed of Life in Space (SOLIS) XI. First measurement of nitrogen fractionation in shocked clumps of the L1157 protostellar outflow
M. Benedettini, S. Viti, C. Codella, C. Ceccarelli, R. Neri, A., Lopez-Sepulcre, E. Bianchi, G. Busquet, P. Caselli, F. Fontani, B. Lefloch,, L. Podio, S. Spezzano, C. Vastel

TL;DR
This study measures the nitrogen isotopic ratio in shocked regions of the L1157 protostellar outflow, finding that shock waves do not significantly alter the nitrogen isotope fractionation, which remains similar to that in colder, less disturbed regions.
Contribution
First measurement of nitrogen isotope ratio in shocked clumps of L1157 outflow, demonstrating shock waves do not significantly affect nitrogen fractionation.
Findings
Nitrogen isotopic ratio in shocked clumps is similar to prestellar cores.
Shock conditions do not significantly change nitrogen fractionation.
Chemical models support observational results for shock impact on nitrogen isotopes.
Abstract
The isotopic ratio of nitrogen presents a wide range of values in the Solar System and in star forming system whose origin is still unclear. Chemical reactions in the gas phase are one of the possible processes that could modify the N/N ratio. We aim at investigating if and how the passage of a shock wave in the interstellar medium, can affect the relative fraction of nitrogen isotopes. The ideal place for such a study is the L1157 outflow, where several shocked clumps are present. We present the first measurement of the N/N ratio in the two shocked clumps, B1 and B0, of the protostellar outflow L1157, derived from the interferomteric maps of the HCN(1-0) and the HCN(1-0) lines. In B1, we find that the HCN(1-0) and HCN(1-0) emission traces the front of the clump, with averaged column density of (HCN) …
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