Retrieval algorithm for densities of mesospheric and lower thermospheric metal and ion species from satellite borne limb emission signals
Author:
Langowski M.ORCID, Sinnhuber M.ORCID, Aikin A. C., von Savigny C., Burrows J. P.ORCID
Abstract
Abstract. Meteoroids bombard the earth's atmosphere during its orbit around the sun, depositing a highly varying and significant amount of matter into the thermosphere and mesosphere. The strength of the material source needs to be characterized and its impact on atmospheric chemistry assessed. In this study an algorithm for the retrieval of metal and metal ion number densities for a two-dimensional (latitude, altitude) grid is described and explained. Dayglow emission spectra of the mesosphere and lower thermosphere are used, which are obtained by passive satellite remote sensing with the SCIAMACHY instrument on Envisat. The limb scans cover the tangent altitude range from 50 to 150 km. Metals and metal ions are strong emitters in this region and form sharply peaked layers with a FWHM of several 10 km in the mesosphere and lower thermosphere with peak altitudes between 90 to 110 km. The emission signal is first separated from the background signal, arising from Rayleigh and Raman scattering of solar radiation by air molecules. A forward radiative transfer model calculating the slant column density (SCD) from a given vertical distribution was developed. This non-linear model is inverted in an iterative procedure to yield the vertical profiles for the emitting species. Several constraints are applied to the solution, for numerical stability reasons and to get physically reasonable solutions. The algorithm is applied to SCIAMACHY limb-emission observations for the retrieval of Mg and Mg+ using emission signatures at 285.2 and 279.6/280.4 nm, respectively. Results are presented for these three lines as well as error estimations and sensitivity tests on different constraint strength and different separation approaches for the background signal.
Publisher
Copernicus GmbH
Reference37 articles.
1. Aikin, A. C., Grebowsky, J. M., and Burrows, J. P.: Satellite measurements of the atmospheric content of metallic ion and neutral species, Adv. Space Res., 33, 1481–1485, 2004. 2. Anderson, G. P. and Hall, L. A.: Solar irradiance between 2000 and 3100 Angstroms with spectral bandpass of 1.0 Angstroms, J. Geophys. Res., 94, 6435–6441, 1989. 3. Batteiger, V., Knünz, S., Herrmann, M., Saathoff, G., Schüssler, H. A., Bernhardt, B., Wilken, T., Holzwarth, R., Hänsch, T. W., and Udem, T.: Precision spectroscopy of the $3s$–$3p$ fine-structure doublet in \\chem{Mg^+}, Phys. Rev. A, 80, 022503, https://doi.org/10.1103/PhysRevA.80.022503, 2009. 4. Bovensmann, H., Burrows, J. P., Buchwitz, M., Frerick, J., No{ë}l, S., Rozanov, V. V., Chance, K. V., and Goede, A. P. H.: SCIAMACHY: mission objectives and measurement modes, J. Atmos. Sci., 56, 127–150, 1999. 5. Boyer, R., Henoux, J. C., and Sotirovski, P.: Isotopes of magnesium in the solar atmosphere, Sol. Phys., 19, 330–337, 1971.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|