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Statistical study of quasi-periodic low-frequency wave emissions in the magnetosphere of the Earth

Project goals

Quasi-periodic (QP) and chorus emissions are wide-band ELF/VLF emissions observed frequently in the inner magnetosphere. The QP waves consist of a periodic modulation of wave intensity with typical periods from several seconds up to a few minutes. The QP emissions can be originated in the equatorial or auroral regions and are accompanied by precipitation of energetic particles modulated with the same period. The chorus waves are generated by the whistler wave-particle interaction in the geomagnetic equatorial plane and are characterized by many discrete short-duration wave packets. We shall perform wave propagation analysis of the QP and chorus emissions using electric and magnetic field data from French micro-satellite DEMETER and CLUSTER spacecraft. Observations of events carried from the equatorial regions to higher latitudes will be compared to the computed structure of the QP waves propagated from different magnetospheric parts. We shall examine correlation between the QP emissions and chorus waves and relate our observations to the theoretical simulations.

Keywords

whistler-mode waves ionosphere

Public support

  • Provider

    Czech Science Foundation

  • Programme

    Standard projects

  • Call for proposals

    Standardní projekty 14 (SGA02011GA-ST)

  • Main participants

    Ústav fyziky atmosféry AV ČR, v. v. i.

  • Contest type

    VS - Public tender

  • Contract ID

    P209-11-2280

Alternative language

  • Project name in Czech

    Systematické studium kvaziperiodických nízkofrekvenčních emisí v magnetosféře Země

  • Annotation in Czech

    Širokopásmové emise jsou často pozorovány v magnetosféře v ELF-VLF pásmu. Jejich intensita je modulována s periodami od několika sekund do minut. Emise jsou pozorovány nejčastěji jak v rovníkových tak aurorálních oblastech a jsou provázeny vysypáváním energetických částic vykazujícím tutéž modulaci. Předběžná analýza dat ukazuje na odlišnou strukturu emisí generovaných v těchto různých oblastech. Chórové vlny vznikají v důsledku interakce energetických částic a hvizdovych vln i skládají se z vlnových balíků. Pro naše řady studium využijeme vícesložková (elektrické i magnetické) vlnová data z francouzského mikrosatelitu DEMETER a družice CLUSTER. Využijeme měření provedena jak kolem magnetického rovníku, tak i ve vyšších šířkách, vyšetříme šíření těchto emisí a provedeme studium procesů, kterými jsou emise v těchto oblastech generovány. Provedeme podrobné srovnání emisí v obou oblastech i s teoretickými modely.

Scientific branches

  • R&D category

    ZV - Basic research

  • CEP classification - main branch

    DG - Atmospheric sciences, meteorology

  • CEP - secondary branch

    BL - Plasma physics and discharge through gases

  • CEP - another secondary branch

  • 10305 - Fluids and plasma physics (including surface physics)
    10509 - Meteorology and atmospheric sciences
    10510 - Climatic research

Completed project evaluation

  • Provider evaluation

    U - Uspěl podle zadání (s publikovanými či patentovanými výsledky atd.)

  • Project results evaluation

    Quasi-periodic emission in the Earth's magnetosphere were studied. The properties of these emissions were described based on the analysis of satellite observations and the created database. A theoretical model explaining the observed characteristics was developed. The results were presented on scientific conferences and in eight impacted publications.

Solution timeline

  • Realization period - beginning

    Jan 1, 2011

  • Realization period - end

    Dec 31, 2015

  • Project status

    U - Finished project

  • Latest support payment

    Mar 26, 2015

Data delivery to CEP

  • Confidentiality

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

  • Data delivery code

    CEP16-GA0-GA-U/01:1

  • Data delivery date

    Sep 25, 2017

Finance

  • Total approved costs

    5,143 thou. CZK

  • Public financial support

    5,143 thou. CZK

  • Other public sources

    0 thou. CZK

  • Non public and foreign sources

    0 thou. CZK

Basic information

Recognised costs

5 143 CZK thou.

Public support

5 143 CZK thou.

100%


Provider

Czech Science Foundation

CEP

DG - Atmospheric sciences, meteorology

Solution period

01. 01. 2011 - 31. 12. 2015