The MPI-Mainz UV/VIS Spectral Atlas

of Gaseous Molecules of Atmospheric Interest

Hannelore Keller-Rudek1, Geert K. Moortgat2, Rolf Sander2, Rüdiger Sörensen1

1Satellite Group

2Atmospheric Chemistry Division

Max-Planck Institute for Chemistry
Mainz, Germany


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Quantum Yields


Contact, Impressum, Acknowledgements

When referring to the Spectral Atlas, please cite our publication:

Keller-Rudek, H., Moortgat, G. K., Sander, R., and Sörensen, R.: The MPI-Mainz UV/VIS spectral atlas of gaseous molecules of atmospheric interest, Earth Syst. Sci. Data, 5, 365–373, (2013), DOI: 10.5194/essd-5-365-2013

Cross Sections / Unclassified / AlO / GomezMartin(2017)_298K_484.23nm

DATAFILE: AlO_GomezMartin(2017)_298K_484.23nm.txt
NAME: aluminium monoxide
AUTHOR(YEAR): GomezMartin(2017)
T: 298K
λ: 484.23nm
BIBLIOGRAPHY: J.C. Gomez Martin, S.M. Daly, J.S.A. Brooke, and J.M.C. Plane, "Absorption cross sections and kinetics of formation of AlO at 298 K", Chem. Phys. Lett. 675, 56-62 (2017); DOI: 10.1016/j.cplett.2017.02.087
COMMENTS: The rate coefficient of the Al + O2 reaction has been measured in a laser ablation-fast flow tube apparatus by monitoring atomic Al resonance absorption and AlO laser induced fluorescence (LIF)

Under conditions of nearstoichiometric conversion of Al into AlO, the absorption cross section of AlO at the bandhead of the B 2Σ+ (v’ = 0) ← X 2Σ+ (v’’ = 0) transition has been determined (resolution 0.003 nm)

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