Literature DB >> 33479576

ARTEMIS Observations of Solar Wind Proton Scattering off the Lunar Surface.

C Lue1,2, J S Halekas1, A R Poppe3, J P McFadden3.   

Abstract

We study the scattering of solar wind protons off the lunar surface, using ion observations collected over 6 years by the ARTEMIS satellites at the Moon. We show the average scattered proton energy spectra, directional scattering distributions, and scattering efficiency, for different solar wind incidence angles and impact speeds. We find that the protons have a scattering distribution that is similar to existing empirical models for scattered hydrogen energetic neutral atoms, with a peak in the backward direction (toward the Sun). We provide a revised model for the scattered proton energy spectrum. We evaluate the positive to neutral charge state ratio by comparing the proton spectrum with existing models for scattered hydrogen. The positive to neutral ratio increases with increasing exit speed from the surface but decreases with increasing impact speed. Combined, these counteracting effects result in a scattering efficiency that decreases from ~0.5% at 300 km/s solar wind speed to ~0.3% at 600 km/s solar wind speed.

Entities:  

Year:  2018        PMID: 33479576      PMCID: PMC7816725          DOI: 10.1029/2018ja025486

Source DB:  PubMed          Journal:  J Geophys Res Space Phys        ISSN: 2169-9380            Impact factor:   2.811


  1 in total

1.  ARTEMIS observations of the solar wind proton scattering function from lunar crustal magnetic anomalies.

Authors:  A R Poppe; J S Halekas; C Lue; S Fatemi
Journal:  J Geophys Res Planets       Date:  2017-04-10       Impact factor: 3.755

  1 in total
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Review 1.  Volatiles and Refractories in Surface-Bounded Exospheres in the Inner Solar System.

Authors:  Cesare Grava; Rosemary M Killen; Mehdi Benna; Alexey A Berezhnoy; Jasper S Halekas; François Leblanc; Masaki N Nishino; Christina Plainaki; Jim M Raines; Menelaos Sarantos; Benjamin D Teolis; Orenthal J Tucker; Ronald J Vervack; Audrey Vorburger
Journal:  Space Sci Rev       Date:  2021-06-16       Impact factor: 8.017

  1 in total

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