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Global model of Whistler Mode Chorus in the Near-Equatorial Region (|λ|m<18o)

Whistler mode chorus is an important magnetospheric emission, playing fundamental roles in the dynamics of the Earth's outer radiation belt and the production of the Earth's diffuse and pulsating aurora. In this study we extend our existing database of whistler mode chorus by including ~3 years of data from RBSP-A and RBSP-B and an additional ~6 years of data from THEMIS A, D, and E, greatly improving the statistics and coverage in the near-equatorial region (|MLAT|<18^o). We produce new global maps of whistler mode chorus as a function of spatial location and frequency. This work is reported in Meredith et al. [2020] and the data provided here enable reconstruction of all of the figures in the paper.

The research leading to these results has received funding from the Natural Environment Research Council (NERC) Highlight Topic grant NE/P01738X/1 (Rad-Sat) and the NERC grant NE/R016038/1. Wen Li and Xiao-Chen Shen received funding from NASA grants NNX17AG07G and 80NSSC19K0845, NSF grant AGS-1847818, and the Alfred P. Sloan Research Fellowship FG-2018-10936. Jacob Bortnik received funding from NASA grants NNX14AI18G, and RBSP-ECT and EMFISIS funding provided by JHU/APL contracts 967399 and 921647 under NASA's prime contract NAS5-01072.

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Date (Creation)
2020-03-11
Date (Revision)
2020-03-11
Date (Publication)
2020-03-11
Date (released)
2020-03-11
Edition
1
Unique resource identifier
https://doi.org/10.5285/2b0afaea-6931-4a7a-b72f-23feeed2d22a
Codespace
doi
Unique resource identifier
GB/NERC/BAS/PDC/01315
Codespace
https://data.bas.ac.uk/
Unique resource identifier
NE/P01738X/1
Codespace
award
Unique resource identifier
NE/R016038/1
Codespace
award
Other citation details
Please cite this item as: shortdoi:10/dp59
Credit
No credit.
Status
completed Completed
Author
  British Antarctic Survey, Natural Environment Research Council, UK Research & Innovation - Meredith, Nigel ( Researcher )
Author
  British Antarctic Survey, Natural Environment Research Council, UK Research & Innovation - Horne, Richard ( Researcher )
Author
  Boston University - Shen, Xiao-Chen ( Researcher )
Author
  Boston University - Li, Wen ( Researcher )
Author
  UCLA - Bortnik, Jacob ( Researcher )
Point of contact
  NERC EDS UK Polar Data Centre
British Antarctic Survey, High Cross, Madingley Road , Cambridge , Cambridgeshire , CB3 0ET , United Kingdom
+44 (0)1223 221400
https://www.bas.ac.uk/team/business-teams/information-services/uk-polar-data-centre/
Maintenance and update frequency
asNeeded As needed
Maintenance note
completed Completed
Global Change Master Directory (GCMD) Science Keywords
  • EARTH SCIENCE > Sun-earth Interactions > Ionosphere/Magnetosphere Dynamics > Plasma Waves
  • EARTH SCIENCE > Sun-earth Interactions > Ionosphere/Magnetosphere Dynamics
Theme
  • Whistler mode chorus
  • plasma waves
  • radiation belts
Place
  • DE1: Perigee 568km, Apogee 23,289 km, Inclination 89.9 degrees
  • Double Star TC1: Perigee 562km, Apogee 78,790km, Inclination 28.2 degrees
  • THEMIS: Apogee above 10Re, Perigee below 2Re
  • Van Allen Probes: Perigee ~1.1Re, Apogee ~5.8Re, Inclination 10 degrees
GEMET - INSPIRE themes, version 1.0
  • Atmospheric conditions
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otherRestrictions Other restrictions
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no limitations to public access
Access constraints
otherRestrictions Other restrictions
Other constraints
no limitations
Use constraints
license License
Other constraints
Open Government Licence v3.0
Use constraints
otherRestrictions Other restrictions
Other constraints
This data is supplied under Open Government Licence v3.0
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url
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url
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crossReference Cross reference
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url
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url
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largerWorkCitation Larger work citation
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textTable Text, table
Metadata language
engEnglish
Character set
utf8 UTF8
Topic category
  • Climatology, meteorology, atmosphere
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Begin date
1981-09-01
End date
1981-06-30
Supplemental Information
It is recommended that careful attention be paid to the contents of any data, and that the author be contacted with any questions regarding appropriate use. If you find any errors or omissions, please report them to polardatacentre@bas.ac.uk.
Date (Publication)
2008-11-12
Publisher
  European Petroleum Survey Group
https://www.epsg-registry.org/
Unique resource identifier
urn:ogc:def:crs:EPSG::3031
Version
6.18.3

Distributor

Distributor
  NERC EDS UK Polar Data Centre
British Antarctic Survey, High Cross, Madingley Road , Cambridge , Cambridgeshire , CB3 0ET , United Kingdom
+44 (0)1223 221400
https://www.bas.ac.uk/team/business-teams/information-services/uk-polar-data-centre/
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Methodology:

The plasma wave data used in this study come from Dynamics Explorer 1 (DE1), Double Star TC1, THEMIS-A, THEMIS-D, THEMIS-E, RBSP-A and RBSP-B. The DE1 wave data are available from the CDAWeb (https://cdaweb.sci.gsfc.nasa.gov/index.html/). The Double Star TC1 data are available at the Cluster Science Archive (https://www.cosmos.esa.int/web/csa). The THEMIS data is available from http://themis.ssl.berkeley.edu/data/themis/. The Van Allen Probes plasma wave data are available at https://emfisis.physics.uiowa.edu/data/index. The AE indices used in this study are available from the NSSDC Omniweb. Full details of the subsequent analysis are given in Meredith et al. [2020].

Data collection:

We use data from the Plasma Wave Instrument on DE1, the STAFF instrument on Double Star TC1, the Search Coil Magnetometers on THEMIS -A, -D and -E and the Electric and Magnetic Field Instrument Suite and Integrated Science (EMFISIS) instruments on board RBSP-A and RBSP-B.

The Plasma Wave Instrument on DE1 measured one component of the magnetic field in the frequency range between 1.78 Hz and 410 kHz. The SFC Step Frequency Correlator, composed of two Step Frequency Receivers, provided the spectral density of the magnetic field coming from 128 frequency channels, logarithmically spaced between 105 Hz and 410 kHz.

The STAFF experiment on Double Star TC1 consisted of a search coil antenna, three pre-amplifiers, a magnetic waveform unit, and power supply provided by CETP, and a Digital Wave Processor (DWP) provided by the University of Sheffield. The DWP computed the spectral matrix (3 power spectra plus the cross phase between each component) at 27 frequencies between 10 Hz and 4 kHz.

The Search Coil Magnetometers on THEMIS-A, -D and -E measured magnetic field fluctuations in the frequency range from 0.1 Hz to 4 kHz. The high resolution (fff) data used here consists of measurements of one component of the magnetic wave spectral density in the spacecraft spin plane, with a frequency resolution with 32 or 64 frequency bands logarithmically spaced over 4-4000 Hz. The total wave power spectral density in the spin plane was then estimated by multiplying by a factor of 2.

The EMFISIS Waveform Receivers on RBSP-A and RBSP-B measured the sum of the three components of the magnetic power spectral density of the waves in 65 frequency channels, with centre frequencies between 2.13 Hz and 11.24 kHz.

Data quality:

The wave data have been calibrated and quality-controlled prior to release.

File identifier
2b0afaea-6931-4a7a-b72f-23feeed2d22a XML
Metadata language
engEnglish
Character set
utf8 UTF8
Hierarchy level
dataset Dataset
Hierarchy level name
dataset
Date stamp
2020-03-11
Metadata standard name
ISO 19115 Geographic Information - Metadata
Metadata standard version
ISO 19115:2003(E)
Point of contact
  NERC EDS UK Polar Data Centre
British Antarctic Survey, High Cross, Madingley Road , Cambridge , Cambridgeshire , CB3 0ET , United Kingdom
+44 (0)1223 221400
https://www.bas.ac.uk/team/business-teams/information-services/uk-polar-data-centre/
 
 

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Keywords

Whistler mode chorus plasma waves radiation belts
GEMET - INSPIRE themes, version 1.0
Atmospheric conditions
Global Change Master Directory (GCMD) Science Keywords
EARTH SCIENCE > Sun-earth Interactions > Ionosphere/Magnetosphere Dynamics EARTH SCIENCE > Sun-earth Interactions > Ionosphere/Magnetosphere Dynamics > Plasma Waves

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