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Particle acceleration by propagating interplanetary shocksThe process of charged particle acceleration in interplanetary shocks has been simulated for typical parameters. Since space probe observations of charged particle fluxes are the principle means of inferring the action of an acceleration mechanism, the simulation was designed to follow particles backwards in time from a given observing point, usually 1 AU. This allowed a full diagnosis of which observed particles had interacted with an oncoming shock, where the interacting occurred, and by how much the energy had been changed by the shock interaction. Simple assumptions about the preshock energy spectrum allow the construction of a full temporal profile of the expected intensity, anisotropy, and energy spectrum. The simulations are apparently capable of reproducing the main features of the less than 10 MeV/nuc ion flux enhancements observed at interplanetary shocks using only a laminar interplanetary magnetic field, Archimidean spiral, and a spherical oblique shock with typical speed, strength, and shock normal-magnetic field angle.
Document ID
19800069038
Acquisition Source
Legacy CDMS
Document Type
Conference Proceedings
Authors
Armstrong, T. P.
(Kansas Univ. Lawrence, KS, United States)
Decker, R. B.
(Kansas, University Lawrence, Kan., United States)
Date Acquired
August 10, 2013
Publication Date
January 1, 1979
Subject Category
Astrophysics
Meeting Information
Meeting: Particle acceleration mechanisms in astrophysics
Location: La Jolla, CA
Start Date: January 3, 1979
End Date: January 5, 1979
Accession Number
80A53208
Funding Number(s)
CONTRACT_GRANT: N00024-78-5384
CONTRACT_GRANT: NSF ATM-76-81099
CONTRACT_GRANT: NASA TASK I
Distribution Limits
Public
Copyright
Other

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