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Earth Science

D-Index
74
Citations
18639
World Ranking
764
National Ranking
363

Overview

Larry R. Lyons is affiliated with the University of California, Los Angeles in the United States. The primary area of research centers on Physics and Astronomy, with a significant number of publications dedicated to this broad field.

The main subfields of study include:

  • Astronomy and Astrophysics
  • Molecular Biology
  • Geophysics
  • Atmospheric Science
  • Aerospace Engineering

The scientist's work covers several main topics, prominently featuring:

  • Ionosphere and magnetosphere dynamics
  • Solar and Space Plasma Dynamics
  • Geomagnetism and Paleomagnetism Studies
  • Earthquake Detection and Analysis
  • Astro and Planetary Science
  • GNSS positioning and interference
  • Plasma Diagnostics and Applications

Larry R. Lyons has a substantial publication record in several venues, such as:

  • Journal of Geophysical Research Space Physics
  • Geophysical Research Letters
  • Frontiers in Astronomy and Space Sciences
  • Zenodo (CERN European Organization for Nuclear Research)
  • Space Weather

Recent papers authored or coauthored include:

  • The Characteristics of EMIC Waves in the Magnetosphere Based on the Van Allen Probes and Arase Observations, 2021, Journal of Geophysical Research Space Physics
  • A space hurricane over the Earth's polar ionosphere, 2021, Nature Communications
  • Multiple transpolar auroral arcs reveal insight about coupling processes in the Earth's magnetotail, 2020, Proceedings of the National Academy of Sciences
  • Extreme Magnetosphere-Ionosphere-Thermosphere Responses to the 5 April 2010 Supersubstorm, 2020, Journal of Geophysical Research Space Physics
  • SECS Analysis of Nighttime Magnetic Perturbation Events Observed in Arctic Canada, 2021, Journal of Geophysical Research Space Physics

Frequent collaborators include:

  • Y. Nishimura
  • Yu-Zhang Ma
  • Jiang Liu
  • Zan-Yang Xing
  • Qinghe Zhang

Best Publications

  • Pitch-angle diffusion of radiation belt electrons within the plasmasphere.

    Lawrence R. Lyons;Richard Mansergh Thorne;Charles F. Kennel

  • Equilibrium structure of radiation belt electrons

    Lawrence R. Lyons;Richard Mansergh Thorne

  • Quantitative Aspects of Magnetospheric Physics

    L. R. Lyons;D. J. Williams

  • Evidence for current sheet acceleration in the geomagnetic tail

    L. R. Lyons;T. W. Speiser

  • Generation of large-scale regions of auroral currents, electric potentials, and precipitation by the divergence of the convection electric field

    L.R. Lyons

  • Identifying the Driver of Pulsating Aurora

    Y. Nishimura;Y. Nishimura;J. Bortnik;W. Li;R. M. Thorne

  • Association between Geotail plasma flows and auroral poleward boundary intensifications observed by CANOPUS photometers

    L. R. Lyons;T. Nagai;G. T. Blanchard;J. C. Samson

  • An observed relation between magnetic field aligned electric fields and downward electron energy fluxes in the vicinity of auroral forms

    L. R. Lyons;D. S. Evans;R. Lundin

  • Substorm triggering by new plasma intrusion: THEMIS all‐sky imager observations

    Y. Nishimura;Y. Nishimura;L. Lyons;S. Zou;S. Zou;V. Angelopoulos

  • Electron diffusion driven by magnetospheric electrostatic waves

    Lawrence R. Lyons

  • Pitch angle and energy diffusion coefficients from resonant interactions with ion-cyclotron and whistler waves

    Lawrence R. Lyons

  • Proton aurora and substorm intensifications

    J. C. Samson;L. R. Lyons;P. T. Newell;F. Creutzberg

  • A new theory for magnetospheric substorms

    L. R. Lyons

  • Parasitic pitch angle diffusion of radiation belt particles by ion cyclotron waves

    Lawrence R. Lyons;Richard Mansergh Thorne

  • Simulations of phase space distributions of storm time proton ring current

    Margaret W. Chen;Larry R. Lyons;Michael Schulz

  • Coordinated observations demonstrating external substorm triggering

    L. R. Lyons;G. T. Blanchard;J. C. Samson;R. P. Lepping

  • The proton ring current and its interaction with the plasmapause: Storm recovery phase

    D. J. Williams;L. R. Lyons

  • Substorms: Fundamental observational features, distinction from other disturbances, and external triggering

    L. R. Lyons

  • Discrete aurora as the direct result of an inferred high‐altitude generating potential distribution

    L. R. Lyons

  • The auroral signature of earthward flow bursts observed in the magnetotail

    Eftyhia Zesta;Lawrence R. Lyons;Eric Donovan

  • Reply to comment by Harald U. Frey on “Substorm triggering by new plasma intrusion: THEMIS all-sky imager observations”

    Y. Nishimura;Y. Nishimura;L. R. Lyons;S. Zou;V. Angelopoulos

Frequent Co-Authors

Yukitoshi Nishimura
Yukitoshi Nishimura Boston University
Vassilis Angelopoulos
Vassilis Angelopoulos University of California, Los Angeles
Eric Donovan
Eric Donovan University of Calgary
J. M. Ruohoniemi
J. M. Ruohoniemi Virginia Tech
S. B. Mende
S. B. Mende University of California, Berkeley
Tsugunobu Nagai
Tsugunobu Nagai Tokyo Institute of Technology
Jacob Bortnik
Jacob Bortnik University of California, Los Angeles
Michael Schulz
Michael Schulz Norwegian Meteorological Institute
Richard A. Wolf
Richard A. Wolf Rice University
Richard M. Thorne
Richard M. Thorne University of California, Los Angeles

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