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Analysis of inner and outer zone: OGO-1 and OGO-2 electron spectrometer and ion chamber dataThe dynamic processes governing the acceleration and loss of electrons in the radiation zones are investigated. The radial diffusion coefficient was determined for a McIlwain parameter between 1.6 and 2.2 for electrons having a first adiabatic invariant of 12 MeV/gauss. The coefficient is larger than earlier values and suggests that there exists a lower limit to the fluxes in the inner zone. The agreement between observed and calculated magnetic fields and particle fluxes is improved by using solar wind pressure as input to the magnetic field models. Changes in the plasma pressure can cause apparent local time asymmetries in particle flux. A comparison of the magnetic field models with observed location of the trapping boundary also indicates the need for including distributed currents within the magnetosphere. The high latitude trapping boundary is only weakly dependent on A sub p, and the trapping boundary data are improved by including in the models a stand-off distance which varies with the plasma pressure.
Document ID
19720021152
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Pfitzer, K. A.
(McDonnell-Douglas Astronautics Co. Huntington Beach, CA, United States)
Date Acquired
August 6, 2013
Publication Date
May 12, 1972
Subject Category
Space Radiation
Report/Patent Number
NASA-CR-127455
NSSDC-ID-66-049A-22-PM
NSSDC-ID-66-049A-23-PM
NSSDC-ID-64-054A-20-PM
MDC-G2960
NSSDC-ID-64-054A-21-PM
Report Number: NASA-CR-127455
Report Number: NSSDC-ID-66-049A-22-PM
Report Number: NSSDC-ID-66-049A-23-PM
Report Number: NSSDC-ID-64-054A-20-PM
Report Number: MDC-G2960
Report Number: NSSDC-ID-64-054A-21-PM
Accession Number
72N28802
Funding Number(s)
CONTRACT_GRANT: NASW-2203
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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