Wind Waves high time resolution plasma densities estimated by using the electron density inferred from the thermal noise peak as recognized by a neural network.
Version:2.3.2
Wind Waves high time resolution plasma densities estimated by using the electron density inferred from the thermal noise peak as recognized by a neural network.
Role | Person | StartDate | StopDate | Note | |
---|---|---|---|---|---|
1. | PrincipalInvestigator | spase://SMWG/Person/Robert.J.MacDowall | U.S. Principal Investigator | ||
2. | PrincipalInvestigator | spase://SMWG/Person/Karine.Issautier | Observatoire de Paris,Meudon Principal Investigator | ||
3. | MetadataContact | spase://SMWG/Person/Robert.M.Candey | |||
4. | MetadataContact | spase://SMWG/Person/Lee.Frost.Bargatze |
Wind overview web page with news updates and information about new data product releases, hosted by NASA GSFC
Wind spacecraft general instrument web page with links to data, documentation, and home pages for all spacecraft instruments, hosted by NASA GSFC
Wind spacecraft general instrument web page with brief descriptions for data sources from all instruments, hosted by NASA GSFC
Wind WAVES home page, the Radio and Plasma Wave Investigation on the Wind Spacecraft with links to the WAVES instrument description and for data plotting and access including IDL savesets and radio burst lists, hosted by NASA GSFC
Wind WAVES data product access web page, hosted by NASA GSFC
General information concerning the Wind, Plasma and Radio Waves, WAVES, instrument
Bougeret, J.-L., M.L. Kaiser, P.J. Kellogg, R. Manning, K. Goetz, S.J. Monson, N. Monge, L. Friel, C.A. Meetre, C. Perche, L. Sitruk, and S. Hoang, WAVES: The radio and plasma wave investigation on the wind spacecraft, Space Sci. Rev., 71, 231-263, 1995, DOI: 10.1007/BF00751331.
Access to Data in CDF Format via ftp from SPDF
Access to Data in CDF Format via http from SPDF
Access to ASCII, CDF, and Plots via NASA/GSFC CDAWeb
Web Service to this product using the HAPI interface.
Epoch Time Tags, Coordinated Universal Time, UTC
Time in PB5 format: Year, Day, and Milliseconds of Day
Electron Number Density, determined from the in situ electron plasma frequency, Fpe, line position as recognized by a neural network
Electric Field Power, in dB at the peak frequency as selected by the neural network algorithm
Data Quality Flag, Electron Density: <50=Bad, >50=Fair, >150=OK, >200=Good
Post Gap Flag: 0=No gap, 1=No valid data