On the determination of ionospheric electron density profiles using multi-frequency riometry

Author:

McKay Derek,Vierinen Juha,Kero Antti,Partamies Noora

Abstract

Abstract. Radio wave absorption in the ionosphere is a function of electron density, collision frequency, radio wave polarisation, magnetic field and radio wave frequency. Several studies have used multi-frequency measurements of cosmic radio noise absorption to determine electron density profiles. Using the framework of statistical inverse problems, we investigated if an electron density altitude profile can be determined by using multi-frequency, dual-polarisation measurements. It was found that the altitude profile cannot be uniquely determined from a “complete” measurement of radio wave absorption for all frequencies and two polarisation modes. This implies that accurate electron density profile measurements cannot be ascertained using multi-frequency riometer data alone and that the reconstruction requires a strong additional a priori assumption of the electron density profile, such as a parameterised model for the ionisation source. Nevertheless, the spectral index of the absorption could be used to determine if there is a significant component of hard precipitation that ionises the lower part of the D region, but it is not possible to infer the altitude distribution uniquely with this technique alone.

Publisher

Copernicus GmbH

Subject

Atmospheric Science,Geology,Oceanography

Reference26 articles.

1. Aggarwal, K. M., Nath, N., and Setty, C. S. G. K.: Collision frequency and transport properties of electrons in the ionosphere, Planet. Space Sci., 27, 753–768, https://doi.org/10.1016/0032-0633(79)90004-7, 1979. a, b, c

2. Aster, R., Borchers, B., and Thurber, C.: Parameter Estimation and Inverse Problems, 2nd ed., Internat. Geophys., Elsevier Science, available at: https://books.google.no/books?id=-nLDwgUAIBgC (last access: 1 December 2017), ISBN 978 0 12 385049 2, 2011. a

3. Belikovich, V. V., Itkins, M. A., and Rodygin, L. V.: Determination of the electron concentration profile in the lower ionosphere from the absorption frequency variation, Geomagn. Aeronomy+, USSR (English Transl.), 4, 4616841, available at: https://www.osti.gov/biblio/4616841 (last access: 17 June 2021), 1964. a, b

4. Cheng, Z., Cummer, S. A., Baker, D. N., and Kanekal, S. G.: Nighttime D region electron density profiles and variabilities inferred from broadband measurements using VLF radio emissions from lightning, J. Geophys. Res.-Space, 111, A011308, https://doi.org/10.1029/2005JA011308, 2006. a

5. Gnanalingam, S. and Kane, J. A.: A study of electron density profiles in relation to ionization sources and ground-based radio wave absorption measurements, NASA STI/Recon Technical Report N, 75, https://ntrs.nasa.gov/citations/19740009006 (last access: 13 November 2017), 1975. a, b, c, d

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