Laboratory Characterization and Astrophysical Detection of Vibrationally Excited States of Vinyl Cyanide in Orion-KL
A. L\'opez, B. Tercero, Z. Kisiel, A. M. Daly, C. Berm\'udez, H., Calcutt, N. Marcelino, S. Viti, B.J. Drouin, I. R. Medvedev, C. F. Neese, L., Pszcz\'o{\l}kowski, J. L. Alonso, and J. Cernicharo

TL;DR
This study combines laboratory spectroscopy and astrophysical observations to detect and analyze vibrationally excited states of vinyl cyanide in Orion-KL, revealing the physical conditions of hot, dense star-forming regions and identifying new interstellar molecules.
Contribution
It provides the first interstellar detection of specific vibrationally excited states of vinyl cyanide and reports new molecular detections in Orion-KL using broadband spectroscopy.
Findings
Detection of vibrationally excited vinyl cyanide states in Orion-KL.
First interstellar detection of certain vibrationally excited states.
Identification of methyl isocyanide and tentative vinyl isocyanide in Orion-KL.
Abstract
New laboratory data of CHCHCN (vinyl cyanide) in its ground and vibrationally excited states at the microwave to THz domain allow searching for these excited state transitions in the Orion-KL line survey. Frequency-modulated spectrometers combined into a single broadband 50-1900 GHz spectrum provided measurements of CHCHCN covering a spectral range of 18-1893 GHz, whose assignments was confirmed by Stark modulation spectra in the 18-40 GHz region and by ab-initio anharmonic force field calculations. For analyzing the emission lines of CHCHCN species detected in Orion-KL we used the excitation and radiative transfer code (MADEX) at LTE conditions. The rotational transitions of the ground state of this molecule emerge from four cloud components of hot core nature which trace the physical and chemical conditions of high mass star forming regions in the Orion-KL Nebula. The…
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