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Electron impact ionization rates for interstellar neutral H and He atoms near interplanetary shocks: Ulysses observationsDuring average solar wind flow conditions at 1 AU, ionization rates of interstellar neutrals that penetrate into the inner heliosphere are dominated by charge exchange with solar wind protons for H atoms, and by photoionization for He atoms. During occurrences of strong, coronal mass ejection (CME)-driven interplanetary shock waves near 1 AU, electron impact ionization can make substantial, if not dominating, contributions to interstellar neutral ionization rates in the regions downstream of the shocks. However, electron impact ionization is expected to be relatively less important with increasing heliocentric distance because of the decrease in electron temperature. Ulysses encountered many CME-driven shocks during its journey to and beyond Jupiter, and in addition, encountered a number of strong corotating interaction region (CIR) shocks. These shocks generally occur only beyond approximately 2 AU. Many of the CIR shocks were very strong rivalling the Earth's bow shock in electron heating. We have compared electron impact ionization rates calculated from electron velocity distributions measured downstream from CIR shocks using the Ulysses SWOOPS experiment to charge-exchange rates calculated from measured proton number fluxes and the photoionization rate estimated from an assumed solar photon spectrum typical of solar maximum conditions. We find that, although normally the ratio of electron-impact ionization rates to charge-exchange (for H) and to photoionization (for He) rates amounts to only about one and a few tens of percent, respectively, downstream of some of the stronger CIR shocks they amount to more than 10% and greater than 100%, respectively.
Document ID
19960021496
Acquisition Source
Jet Propulsion Laboratory
Document Type
Conference Paper
Authors
Feldman, W. C.
(Los Alamos National Lab. NM United States)
Phillips, J. L.
(Los Alamos National Lab. NM United States)
Gosling, J. T.
(Los Alamos National Lab. NM United States)
Isenberg, P. A.
(New Hampshire Univ. Durham, NH United States)
Date Acquired
August 17, 2013
Publication Date
June 30, 1995
Publication Information
Publication: International Solar Wind 8 Conference
Subject Category
Astrophysics
Accession Number
96N24892
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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