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EMIC emissions in the magnetosphere

Project goals

Electromagnetic Ion Cyclotron (EMIC) waves are ultra low frequency emissions observed in the Earth's magnetosphere - especially close to the radiation belts - since the first in situ space missions. They usually arise from ion temperature anisotropy and they can in turn interact with ions and electrons. EMIC triggered emissions have been observed in situ for the first time in 2010 by the Cluster fleet, close to the plasmapause. The low total number of events observed by Cluster is mainly due to the polar orbit of the spacecraft. We propose here to study these highly coherent waves using measurements of more recent spacecraft missions, as the Van Allen probes and MMS, by implementing an automatic detection method based on the existing Cluster events. Unprecedented database of 16 years of Cluster data can further provide us with new findings about the source region of triggered EMIC waves. In particular, we plan to investigate the Poynting vector and the EMIC location as a function of the distance from the magnetopause.

Keywords

waveplasmaEMICwave particle interactions

Public support

  • Provider

    Czech Science Foundation

  • Programme

    Standard projects

  • Call for proposals

    Standardní projekty 22 (SGA0201800001)

  • Main participants

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

  • Contest type

    VS - Public tender

  • Contract ID

    18-05285S

Alternative language

  • Project name in Czech

    Magnetosferické emise typu EMIC

  • Annotation in Czech

    Elektromagnetické iontově-cyklotronové vlny (EMIC) jsou vlnové emise na velmi nízkých frekvencích (pásmo ULF < 10 Hz) pozorované v magnetosféře Země, zvláště v blízkosti radiačních pásů. Obvykle jsou generovány iontovou teplotní anizotropií a mohou zpětně ovlivňovat ionty a elektrony v plazmatu. Spouštěné EMIC emise byly poprvé pozorovány v roce 2010 v datech z družic Cluster v blízkosti plasmapauzy. Celkově nízký počet dosavadních pozorování je způsoben především polární oběžnou dráhou družic Cluster. Navrhujeme další studium těchto emisí s užitím dat z nových družic s vhodnější dráhou, jako například Van Allen Probes a MMS za použití metod automatické detekce založené na existujícím souboru dat družic Cluster. Přestože již bylo publikováno několik statistických studií emisí typu EMIC, věříme, že data z družic Cluster získaná za dosavadních 16 let jejich provozu, umožní získat další nové poznatky o poloze zdroje EMIC vln vzhledem k poloze magnetopauzy za použití analýzy jejich Poyntingova vektoru.

Scientific branches

  • R&D category

    ZV - Basic research

  • OECD FORD - main branch

    10308 - Astronomy (including astrophysics,space science)

  • OECD FORD - secondary branch

    10305 - Fluids and plasma physics (including surface physics)

  • OECD FORD - another secondary branch

  • BK - Liquid mechanics
    BL - Plasma physics and discharge through gases
    BN - Astronomy and celestial mechanics, astrophysics

Completed project evaluation

  • Provider evaluation

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

  • Project results evaluation

    The project investigated EMIC triggered emissions by implementing an automatic detection procedure and detected their source regions in the outer dayside magnetosphere. Two doctoral students were involved in the project. Results of the project were published in 8 articles. Drawing of subsidy was in accordance with rules. Goals of the project were successfully accomplished.

Solution timeline

  • Realization period - beginning

    Jan 1, 2018

  • Realization period - end

    Dec 31, 2021

  • Project status

    U - Finished project

  • Latest support payment

    Apr 1, 2021

Data delivery to CEP

  • Confidentiality

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

  • Data delivery code

    CEP22-GA0-GA-U

  • Data delivery date

    Jun 29, 2022

Finance

  • Total approved costs

    3,446 thou. CZK

  • Public financial support

    3,218 thou. CZK

  • Other public sources

    228 thou. CZK

  • Non public and foreign sources

    0 thou. CZK

Basic information

Recognised costs

3 446 CZK thou.

Public support

3 218 CZK thou.

93%


Provider

Czech Science Foundation

OECD FORD

Astronomy (including astrophysics,space science)

Solution period

01. 01. 2018 - 31. 12. 2021