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The Spatial Distribution of Complex Organic Molecules in the L1544 Pre-stellar Core

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arxiv 1609.05045 v1 pith:65I54DQG submitted 2016-09-16 astro-ph.SR astro-ph.GA

The Spatial Distribution of Complex Organic Molecules in the L1544 Pre-stellar Core

classification astro-ph.SR astro-ph.GA
keywords comspre-stellartowardchemistrycorel1544low-densityshell
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The detection of complex organic molecules (COMs) toward cold sources such as pre-stellar cores (with T<10 K), has challenged our understanding of the formation processes of COMs in the interstellar medium. Recent modelling on COM chemistry at low temperatures has provided new insight into these processes predicting that COM formation depends strongly on parameters such as visual extinction and the level of CO freeze out. We report deep observations of COMs toward two positions in the L1544 pre-stellar core: the dense, highly-extinguished continuum peak with Av>=30 mag within the inner 2700 au; and a low-density shell with average Av~7.5-8 mag located at 4000 au from the core's center and bright in CH3OH. Our observations show that CH3O, CH3OCH3 and CH3CHO are more abundant (by factors ~2-10) toward the low-density shell than toward the continuum peak. Other COMs such as CH3OCHO, c-C3H2O, HCCCHO, CH2CHCN and HCCNC show slight enhancements (by factors <=3) but the associated uncertainties are large. This suggests that COMs are actively formed and already present in the low-density shells of pre-stellar cores. The modelling of the chemistry of O-bearing COMs in L1544 indicates that these species are enhanced in this shell because i) CO starts freezing out onto dust grains driving an active surface chemistry; ii) the visual extinction is sufficiently high to prevent the UV photo-dissociation of COMs by the external interstellar radiation field; and iii) the density is still moderate to prevent severe depletion of COMs onto grains.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Probing outflow physics through CH$_3$CN and CH$_3$OH chemistry

    astro-ph.GA 2026-06 unverdicted novelty 4.0

    The CH₃OH/CH₃CN ratio in the S68N outflow is constant at ~100-200 and matches gas-phase astrochemical models only when cosmic-ray ionization rates are raised to ~10^{-14} s^{-1}.

  2. Chemical Complexity in the Early Stages of Star Formation in the SKAO Era

    astro-ph.SR 2026-06 unverdicted novelty 2.0

    SKAO, especially SKA-Mid Band 5, is expected to overcome dust opacity and frequency limits to detect complex prebiotic molecules in high-mass and solar-type protostellar regions.