Chemical complexity in local diffuse and translucent clouds: ubiquitous l-C3H and CH3CN, a detection of HC3N and an upper limit on the abundance of CH2CN
arXiv:1802.08325 · doi:10.3847/1538-4357/aab208
Abstract
We present Jansky Very Large Array observations of 20 - 37 GHz absorption lines from nearby Galactic diffuse molecular gas seen against four cosmologically-distant compact radio continuum sources. The main new observational results are that \linearC3H\ and \methCN\ are ubiqitous in the local diffuse molecular interstellar medium at \AV\ $\la 1$ while HCN was seen only toward B0415 at \AV\ 4 mag. The linear/cyclic ratio is much larger in CH than in C\HH\ and the ratio \methCN/HCN is enhanced compared to TMC-1, although not as much as toward the Horsehead Nebula. More consequentially, this work completes a long-term program assessing the abundances of small hydrocarbons (CH, \cch, linear and cyclic CH and C\HH, and \cfh\ and \cfhm) and the CN-bearing species (CN, HCN, HNC, HCN, HCN and CHCN): their systematics in diffuse molecular gas are presented in detail here. We also observed but did not strongly constrain the abundances of a few oxygen-bearing species, most prominently HNCO. We set limits on the column density of C\HH CN, such that the anion C\HH CN\m\ is only viable as a carrier of diffuse interstellar bands if the N(C\HH CN)/N(C\HH CN\m) abundance ratio is much smaller in this species than in any others for which the anion has been observed. We argue that complex organic molecules are not present in clouds meeting a reasonable definition of diffuse molecular gas, ie \AV\ $\la 1$ mag.
Accepted for ApJ
References in corpus (18)
- Ultraviolet Survey of CO and H_2 in Diffuse Molecular Clouds: The Reflection of Two Photochemistry Regimes in Abundance Relationships
- The chemistry and spatial distribution of small hydrocarbons in UV-irradiated molecular clouds: the Orion Bar PDR
- A New Reference Chemical Composition for TMC-1
- Chemical probes of turbulence in the diffuse medium: the TDR model
- The interstellar chemistry of C3H and C3H2 isomers
- Spatially resolved l-c3h+ emission in the horsehead photodissociation region: Further evidence for a top-down hydrocarbon chemistry
- Nitrogen hydrides in interstellar gas II. Analysis of Herschel/HIFI observations towards W49N and G10.6-0.4 (W31C)
- Formation, fractionation and excitation of carbon monoxide in diffuse clouds
- Complex organic molecules in strongly UV-irradiated gas
- The CH2CN- molecule: Carrier of the lambda8037 diffuse interstellar band?
- Origin of CH+ in diffuse molecular clouds warm H2 and ion-neutral drift
- HCO, c-C3H and CF+ : three new molecules in diffuse, translucent and "spiral-arm'' clouds
- Complex organic molecules in diffuse clouds along the line of sight to Sgr B2
- Understanding the Chemical Complexity in Circumstellar Envelopes of C-rich AGB Stars: the Case of IRC +10216
- The Molecular Chemistry of Diffuse and Translucent Clouds in the Line-of-Sight to Sgr B2
- Widespread Galactic CF+ absorption: detection toward W49 with the Plateau de Bure Interferometer
- Formation and Fractionation of CO (carbon monoxide) in diffuse clouds observed at optical and radio wavelengths
- The diffuse molecular component in the nuclear bulge of the Milky Way
Cited by in corpus (22)
- Gas phase Elemental abundances in Molecular cloudS (GEMS) I. The prototypical dark cloud TMC 1
- Confirming interstellar C using the Hubble Space Telescope
- The first steps of Interstellar Phosphorus Chemistry
- Molecular ion abundances in the diffuse ISM : CF+, HCO+, HOC+, and C3H+
- Infrared spectra of complex organic molecules in astronomically relevant ice mixtures. V. Methyl cyanide (acetonitrile)
- Small-scale physical and chemical structure of diffuse and translucent molecular clouds along the line of sight to Sgr B2
- Molecular hydrogen and its proxies HCO and CO in the diffuse interstellar medium
- C2H N=1-0 and N2H+ J=1-0 observations of Planck Galactic cold clumps
- Photodesorption of acetonitrile CH3CN in UV-irradiated regions of the Interstellar Medium: an experimental evidence
- Planck Cold Clumps in the lambda Orionis Complex. III. A chemical probe of stellar feedback on cores in the lambda Orionis cloud
- Destruction of interstellar methyl cyanide (CH3CN) via collisions with He+ ions
- CO+ as a probe of the origin of CO in diffuse interstellar clouds
- H2CO and CS in diffuse clouds: Excitation and abundance
- Carbon-chain molecule survey toward four low-mass molecular outflow sources
- Chemical variations across the TMC-1 boundary: molecular tracers from translucent phase to dense phase
- HyGAL: Characterizing the Galactic ISM with observations of hydrides and other small molecules II. The absorption line survey with the IRAM 30 m telescope
- Observations and Analysis of Absorption Lines including J = K Rotational Levels of CH3CN: The Envelope of Sagittarius B2(M)
- Carbon accretion and desorption by interstellar polycyclic aromatic hydrocarbons
- Optical properties and dust temperatures in clumpy diffuse medium
- Spectral survey of the diffuse gas toward BL Lac in the Q band
- The role of neutral hydrogen in setting the abundances of molecular species in the Milky Way's diffuse interstellar medium. II. Comparison between observations and theoretical models
- Interstellar Hydrocarbons: Degradation Chemistry in Diffuse Clouds