Detection of vibronic bands of C in a translucent cloud towards HD 169454
arXiv:1403.7280 · doi:10.1093/mnras/stu641
Abstract
We report the detection of eight vibronic bands of C, seven of which have been hitherto unobserved in astrophysical objects, in the translucent cloud towards HD~169454. Four of these bands are also found towards two additional objects: HD~73882 and HD~154368. Very high signal-to-noise ratio (1000 and higher) and high resolving power () UVES-VLT spectra (Paranal, Chile) allow for detecting novel spectral features of C, even revealing weak perturbed features in the strongest bands. The work presented here provides the most complete spectroscopic survey of the so far largest carbon chain detected in translucent interstellar clouds. High-quality laboratory spectra of C are measured using cavity ring-down absorption spectroscopy in a supersonically expanding hydrocarbon plasma, to support the analysis of the identified bands towards HD~169454. A column density of N(C) = cm is inferred and the excitation of the molecule exhibits two temperature components; K for the low- states and K for the high- tail. The rotational excitation of C is reasonably well explained by models involving a mechanism including inelastic collisions, formation and destruction of the molecule, and radiative pumping in the far-infrared. These models yield gas kinetic temperatures comparable to those found for . The assignment of spectral features in the UV-blue range 3793-4054 Å may be of relevance for future studies aiming at unravelling spectra to identify interstellar molecules associated with the diffuse interstellar bands (DIBs).
15 pages, 13 figures, submitted to MNRAS
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Cited by in corpus (5)
- Confirming interstellar C using the Hubble Space Telescope
- The ESO Diffuse Interstellar Bands Large Exploration Survey: EDIBLES I. Project description, survey sample and quality assessment
- C and the Diffuse Interstellar Bands: An Independent Laboratory Check
- The Bending of C: Experimentally Probing the -type Doubling and Resonance
- Position displacement of diffuse interstellar bands