Articles | Volume 3, issue 3
https://doi.org/10.5194/amt-3-733-2010
© Author(s) 2010. This work is distributed under the Creative Commons Attribution 3.0 License.
Theoretical description of functionality, applications, and limitations of SO2 cameras for the remote sensing of volcanic plumes
Cited articles
Bluth, G. J. S., Shannon, J. M., Watson, I. M., Prata, A. J., and Realmuto, V. J.: Development of an ultra-violet digital camera for volcanic SO2 imaging, J. Volcanol. Geotherm. Res., 161, 47–56, 2007.
Bobrowski, N., Hönninger, G., Galle, B., and Platt, U.: Detection of bromine monoxide in a volcanic plume, Nature 423, 273–276, 2003.
Bobrowski, N., Hönninger, G., Lohberger, F., and Platt, U.: IDOAS: A new monitoring technique to study the 2D distribution of volcanic gas emissions, J. Volcanol. Geotherm. Res., 150, 329–338, 2006.
Bogumil, K., Orphal, J., Homan, T., Voigt, S., Spietz, P., Fleischmann, O., Vogel, A., Hartmann, M., Bovensmann, H., Frerick, J., and Burrows, J.: Measurements of molecular absorption spectra with the SCIAMACHY pre-flight model: instrument characterization and reference data for atmospheric remote-sensing in the 230–2380 nm region, J. Photochem. Photobiol. A., 157, 167–184, 2003.
Burton, M. R., Allard, P., Murè, F., and La Spina, A.: Magmatic gas composition reveals the source depth of slug-driven Strombolian explosive activity, Science, 317, 227–230, 2007.