Published 1999 | Version Published
Book Section - Chapter Open

Simulation of the Charge State and Energy Spectrum of Solar Energetic Iron

Abstract

In a nonequilibrium model that includes shock-induced acceleration, we simulate the charge state and energy spectra of solar energetic iron. In this model the mean charge state exhibits an energy dependence seen in recent large solar events by SAMPEX and ACE. The simulated energy spectrum is a power-law and charge distributions are roughly Gaussians. The density distributions are smooth in charge-momentum space, suggesting that the accelerated ion retains no memory of its initial charge as well as momentum conditions.

Additional Information

© University of Utah. Provided by the NASA Astrophysics Data System. Work has been supported by NSF grant no. 9810653 and ASA-JOVE grant no. NAG8-1208 (AFB), and by NASA grants NAS5-30704 and NAGS-6912 at Caltech.

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Identifiers

Eprint ID
54837
Resolver ID
CaltechAUTHORS:20150213-133408584

Funding

NSF
9810653
NASA-JOVE
NAG8-1208
NASA
NAS5-30704
NASA
NAG5-6912

Dates

Created
2015-02-20
Created from EPrint's datestamp field
Updated
2019-11-22
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Space Radiation Laboratory
Other Numbering System Name
Space Radiation Laboratory
Other Numbering System Identifier
1999-43