Unifying VLF Transmitter and Sferic Modeling Efforts Via Tomography

Author:

Richardson David K.1ORCID,Cohen Morris B.1ORCID

Affiliation:

1. School of Electrical and Computer Engineering Georgia Institute of Technology Atlanta GA USA

Abstract

AbstractWe demonstrate a methodology for utilizing measurements from very low frequency (VLF, 3−30 kHz) transmitters and lightning emissions to produce 3D lower electron density maps, and apply it to multiple geophysical disturbances. The D‐region lower ionosphere (60−90 km) forms the upper boundary of the Earth‐ionosphere waveguide which allows VLF radio waves to propagate to global distances. Measurements of these signals have, in many prior studies, been used to infer path‐average electron density profiles within the D region. Historically, researchers have focused on either measurements of VLF transmitters or radio atmospherics (sferics) from lightning. In this work, we build on recently published methods for each and present a method to unify the two approaches via tomography. The output of the tomographic inversion produces maps of electron density over a large portion of the United States and Gulf of Mexico. To illustrate the benefits of this unified approach, daytime and nighttime maps are compared between a sferic‐only model and the new approach suggested here. We apply the model to characterize two geophysical disturbances: solar flares and lower ionospheric changes associated with thunderstorms.

Funder

National Science Foundation

Defense Advanced Research Projects Agency

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Geophysics

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