1. Alicke, B., Platt, U., and Stutz, J.: Impact of nitrous acid photolysis on
the total hydroxyl radical budget during the Limitation of Oxidant
Production/Pianura Padana Produzione di Ozono study in Milan, J. Geophys.
Res., 107, D228196, https://doi.org/10.1029/2000jd000075, 2002.
2. Bates, D. R.: Rayleigh scattering by air, Planet. Space Sci., 32, 785–790, https://doi.org/10.1016/0032-0633(84)90102-8, 1984.
3. Bodhaine, B. A., Wood, N. B., Dutton, E. G., and Slusser, J. R.: On Rayleigh
optical depth calculations, J. Atmos. Ocean. Tech., 16, 1854–1861, https://doi.org/10.1175/1520-0426(1999)016<1854:ORODC>2.0.CO;2, 1999.
4. Burkholder, J. B., Sander, S. P., Abbatt, J. P. D., Barker, J. R., Huie, R.
E., Kolb, C. E., Kurylo, M. J., Orkin, V. L., Wilmouth, D. M., and Wine, P.
H.: Chemical Kinetics and Photochemical Data for Use in Atmospheric Studies,
Evaluation Number 18, National Aeronautics and Space Administration, Jet
Propulsion Laboratory, California Institute of Technology, Pasadena,
California, 2015.
5. Burrows, J. P., Dehn, A., Deters, B., Himmelmann, S., Richter, A., Voigt,
S., and Orphal, J.: Atmospheric remote-sensing reference data from GOME:
Part 1. Temperature-dependent absorption cross-sections of NO2 in the
231–794 nm range, J. Quant. Spectrosc. Ra., 60, 1025–1031,
https://doi.org/10.1016/S0022-4073(97)00197-0, 1998.