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Earth Science

D-Index
36
Citations
5293
World Ranking
7190
National Ranking
77

Overview

Neil R. Thomson is affiliated with the University of Otago in New Zealand. Their research primarily focuses on the interactions between the ionosphere, magnetosphere, and related geophysical phenomena. The scientist has contributed to understanding ionospheric dynamics, earthquake detection, GNSS positioning, and space plasma behavior through a range of studies published in reputable venues.

Their recent publications include detailed analyses of geomagnetically induced currents and ionospheric properties, reflecting a broad engagement with space weather and geophysical research. Notable papers by Neil R. Thomson are:

  • "Ionospheric D Region: VLF-Measured Electron Densities Compared With Rocket-Based FIRI-2018 Model", 2022, Journal of Geophysical Research Space Physics
  • "Quiet Night Arctic Ionospheric D Region Characteristics", 2021, Journal of Geophysical Research Space Physics

In addition, the following works related to the field have been recently published, although they list other primary authors:

  • "Geomagnetically Induced Currents and Harmonic Distortion: Storm-Time Observations From New Zealand", 2020, Space Weather
  • "Geomagnetically Induced Currents and Harmonic Distortion: High Time Resolution Case Studies", 2020, Space Weather
  • "Solar Flare X-Ray Impacts on Long Subionospheric VLF Paths", 2021, Space Weather

Frequent co-authors collaborating with Neil R. Thomson include:

  • Craig J. Rodger
  • Mark A. Clilverd
  • J. B. Brundell
  • Daniel H. Mac Manus
  • Ian Martin

Neil R. Thomson tends to publish in specialized journals such as:

  • Space Weather
  • Journal of Geophysical Research Space Physics

Their work spans several fields and subfields of study, notably:

  • Physics and Astronomy
  • Earth and Planetary Sciences
  • Astronomy and Astrophysics
  • Geophysics
  • Aerospace Engineering

The primary topics explored in their research include:

  • Ionosphere and magnetosphere dynamics
  • Earthquake Detection and Analysis
  • GNSS positioning and interference
  • Solar and Space Plasma Dynamics
  • Lightning and Electromagnetic Phenomena
  • Seismic Waves and Analysis

Best Publications

  • STARE: A new radar auroral backscatter experiment in northern Scandinavia

    R. A. Greenwald;W. Weiss;E. Nielsen;N. R. Thomson

  • Detection efficiency of the VLF World-Wide Lightning Location Network (WWLLN): initial case study

    C. J. Rodger;S. Werner;J. B. Brundell;E. H. Lay

  • Experimental daytime VLF ionospheric parameters

    N.R. Thomson

  • Large solar flares and their ionospheric D region enhancements

    Neil R. Thomson;Craig J. Rodger;Mark A. Clilverd

  • VLF phase and amplitude: daytime ionospheric parameters

    Wayne M. McRae;Neil R. Thomson

  • Solar flare induced ionospheric D-region enhancements from VLF phase and amplitude observations

    Wayne M. McRae;Neil R. Thomson

  • Solar flare induced ionospheric D-region enhancements from VLF amplitude observations

    Neil R. Thomson;Mark A. Clilverd

  • Location accuracy of long distance VLF lightning locationnetwork

    C. J. Rodger;J. B. Brundell;R. L. Dowden;N. R. Thomson

  • Ionosphere gives size of greatest solar flare

    Neil R. Thomson;Craig J. Rodger;Richard L. Dowden

  • Remote sensing space weather events: Antarctic‐Arctic Radiation‐belt (Dynamic) Deposition‐VLF Atmospheric Research Konsortium network

    Mark A. Clilverd;Craig J. Rodger;Neil R. Thomson;James B. Brundell

  • Nighttime ionospheric D region parameters from VLF phase and amplitude

    Neil R. Thomson;Mark A. Clilverd;Wayne M. McRae

  • Radiation belt electron precipitation by man‐made VLF transmissions

    Rory J. Gamble;Craig J. Rodger;Mark A. Clilverd;Jean-André Sauvaud

  • Total solar eclipse effects on VLF signals: Observations and modeling

    Mark A. Clilverd;Craig J. Rodger;Neil R. Thomson;János Lichtenberger

  • Observations of relativistic electron precipitation from the radiation belts driven by EMIC waves

    Craig J. Rodger;Tero Raita;Mark A. Clilverd;Annika Seppälä

  • Ground-based transmitter signals observed from space: Ducted or nonducted?

    Mark A. Clilverd;Craig J. Rodger;Rory Gamble;Nigel P. Meredith

  • World-wide lightning location using VLF propagation in the Earth-ionosphere waveguide

    R. Dowden;R. Holzworth;C. Rodger;J. Lichtenberger

  • Sunrise effects on VLF signals propagating over a long north‐south path

    Mark A. Clilverd;Neil R. Thomson;Craig J. Rodger

  • The annual variation in quiet time plasmaspheric electron density, determined from whistler mode group delays

    M.A. Clilverd;A.J. Smith;N.R. Thomson

  • Radiation belt electron precipitation into the atmosphere: Recovery from a geomagnetic storm

    Craig J. Rodger;Mark A. Clilverd;Neil R. Thomson;Rory J. Gamble

  • Relaxation of transient ionization in the lower ionosphere

    Craig J. Rodger;Oleg A. Molchanov;Neil R. Thomson

Frequent Co-Authors

Craig J. Rodger
Craig J. Rodger University of Otago
Mark A. Clilverd
Mark A. Clilverd British Antarctic Survey
Annika Seppälä
Annika Seppälä University of Otago
Michel Parrot
Michel Parrot Centre national de la recherche scientifique, CNRS
Jean-Jacques Berthelier
Jean-Jacques Berthelier Centre national de la recherche scientifique, CNRS
Pekka T. Verronen
Pekka T. Verronen Finnish Meteorological Institute
Nigel P. Meredith
Nigel P. Meredith British Antarctic Survey
Bill R. Sandel
Bill R. Sandel University of Arizona
James R. Wait
James R. Wait University of Arizona

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