ResourceName
Geotail Low Energy Particle (LEP) experiment data Weimer Propagated 60 s Resolution in GSE Coordinates
AlternateName
Geotail LEP data
DOI
https://doi.org/10.21978/p8fk8q
ReleaseDate
2021-05-31 12:34:56.789
RevisionHistory
RevisionEvent
ReleaseDate
2021-05-31 12:34:56.789
Note
Updated to SPASE Version 2.3.2 if needed, Applied quality control for DOI usage, LFB
Description
Geotail LEP Weimer propagated solar wind data and linearly interpolated to have the measurements on the minute at 60 s resolution data in GSE coordinates. This data set consists of propagated solar wind data that has first been propagated to a position just outside of the nominal bow shock (about 17, 0, 0 Re) and then linearly interpolated to 1 min resolution using the interp1.m function in MATLAB. The input data for this data set is a 1 min resolution processed solar wind data constructed by Dr. J.M. Weygand. The method of propagation is similar to the minimum variance technique and is outlined in Dan Weimer et al. [2003; 2004]. The basic method is to find the minimum variance direction of the magnetic field in the plane orthogonal to the mean magnetic field direction. This minimum variance direction is then dotted with the difference between final position vector minus the original position vector and the quantity is divided by the minimum variance dotted with the solar wind velocity vector, which gives the propagation time. This method does not work well for shocks and minimum variance directions with tilts greater than 70 degrees of the sun-earth line. This data set was originally constructed by Dr. J.M. Weygand for Prof. R.L. McPherron, who was the principle investigator of two National Science Foundation studies: GEM Grant ATM 02-1798 and a Space Weather Grant ATM 02-08501. These data were primarily used in superposed epoch studies References: Weimer, D. R. (2004), Correction to ‘‘Predicting interplanetary magnetic field (IMF) propagation delay times using the minimum variance technique,’’ J. Geophys. Res., 109, A12104, doi:10.1029/2004JA010691. Weimer, D.R., D.M. Ober, N.C. Maynard, M.R. Collier, D.J. McComas, N.F. Ness, C. W. Smith, and J. Watermann (2003), Predicting interplanetary magnetic field (IMF) propagation delay times using the minimum variance technique, J. Geophys. Res., 108, 1026, doi:10.1029/2002JA009405.
Acknowledgement
Toshifumi Mukai;The Institute of Space and Astronautical Science
PublicationInfo
Authors
Weygand, James M.; & McPherron, Robert L.
PublicationDate
2006-01-01 00:00:00
PublishedBy
University of California, Los Angeles
Contacts
InformationURL
Name
LEP experiment
URL
Description
LEP information
InformationURL
Name
LEP experiment
URL
Description
LEP quicklook
InformationURL
Name
LEP experiment
URL
Description
LEP information
InformationURL
Name
Solar Wind Propagation Information
URL
Description
Solar wind archive at UCLA. This archive provides a list of available data resources and available time ranges.
PriorIDs
spase://VMO/NumericalData/Weygand/Geotail/LEP/Propagated.LEP/GSE/PT60S
spase://VSPO/NumericalData/Geotail/CPI-MGF-LEP/PT1M
spase://VSPO/NumericalData/Weygand/Geotail/LEP/Propagated.LEP/GSE/PT60S
Name
Universal Time
ParameterKey
Time
Description
Universal Time AFTER Propagation columns from left to right are: day month year hour minute sec in the format of dd mm yyyy hh mm ss.
Cadence
PT60S
Structure
Size
6
Description
Universal Time expressed using a 6-column day, month, year, hour, minute, second representation
Element
Name
Day
Index
1
ParameterKey
Day
Element
Name
Month
Index
2
ParameterKey
Month
Element
Name
Year
Index
3
ParameterKey
Year
Element
Name
Hour
Index
4
ParameterKey
Hour
Element
Name
Minute
Index
5
ParameterKey
Minute
Element
Name
Second
Index
6
ParameterKey
Second
Support
Name
Geotail LEP Thermal Speed Weimer Propagated 1 min Resolution Data in GSE Coordiates
ParameterKey
Thermal Speed
Description
Weimer propagated Geotail LEP thermal speed in GSE coordinates in units of km/s.
Caveats
Be sure you understand the instrument
Cadence
PT60S
Units
KM/S
Particle
ParticleType
Ion
ParticleQuantity
ThermalSpeed
Name
Geotail LEP Density Weimer Propagated 1 min Resolution Data in GSE Coordiates
ParameterKey
Density
Description
Weimer propagated density data for Geotail LEP in GSE coordinates in units of number per cubic centimeter.
Cadence
PT60S
Units
#/cm^-3
Particle
ParticleType
Ion
ParticleQuantity
NumberDensity
Name
Geotail LEP Velocity Vector Weimer Propagated 1 min Resolution Data in GSE Coordiates
ParameterKey
Velocity Vectors
Description
Weimer propagated Flow vector for Geotail LEP in GSE coordinates in units of km/s.
Caveats
Be sure you understand the instrument
Cadence
PT60S
Units
KM/S
CoordinateSystem
CoordinateRepresentation
Cartesian
CoordinateSystemName
GSE
Structure
Size
3
Element
Name
VX-GSE
Qualifier
Component.I
Index
1
ParameterKey
pvxgse
Element
Name
VY-GSE
Qualifier
Component.J
Index
2
ParameterKey
pvygse
Element
Name
VZ-GSE
Qualifier
Component.K
Index
3
ParameterKey
pvzgse
Particle
ParticleType
Ion
ParticleQuantity
Velocity
Name
Geotail Spacecraft Weimer Propagated Position Vector Interpolated to 1 min Resolution in GSE Coordiates
ParameterKey
Position Vectors
Description
Weimer propagated location of the spacecraft in GSE coordinates in units of Re.
Cadence
PT60S
Units
Re
CoordinateSystem
CoordinateRepresentation
Cartesian
CoordinateSystemName
GSE
Structure
Size
3
Element
Name
X-GSE
Qualifier
Component.I
Index
1
ParameterKey
pxgse
Element
Name
Y-GSE
Qualifier
Component.J
Index
2
ParameterKey
pygse
Element
Name
Z-GSE
Qualifier
Component.K
Index
3
ParameterKey
pzgse
Support
SupportQuantity
Positional