Literature DB >> 32873995

MAVEN Observations of the Effects of Crustal Magnetic Fields on Electron Density and Temperature in the Martian Dayside Ionosphere.

Casey L Flynn1, Marissa F Vogt2, Paul Withers1,2, Laila Andersson3, Scott England4, Guiping Liu5.   

Abstract

Mars lacks a global magnetic field but possesses concentrated regions of crustal magnetic field that influence the planet's interaction with the solar wind and the structure of the Martian ionosphere. In this study we survey 17 months of MAVEN Langmuir Probe and Waves dayside electron density and temperature measurements to study how these quantities are affected in regions with strong crustal magnetic fields. Above 200 km altitude, we find that regions of strong crustal magnetic fields feature cooler electron temperatures and enhanced electron densities compared to regions with little or no crustal magnetic field. Neutral densities and temperatures are not significantly affected. Closed field lines on which electrons can be trapped are more prevalent in strong crustal field regions than elsewhere. Trapped on closed field lines, electrons are protected against loss processes involving the solar wind. This would lead to longer plasma lifetimes, higher densities, and lower temperatures.

Year:  2017        PMID: 32873995      PMCID: PMC7458087          DOI: 10.1002/2017gl075367

Source DB:  PubMed          Journal:  Geophys Res Lett        ISSN: 0094-8276            Impact factor:   4.720


  1 in total

1.  Tidal Wave-Driven Variability in the Mars Ionosphere-Thermosphere System.

Authors:  Scott A Thaller; Laila Andersson; Marcin Dominik Pilinski; Edward Thiemann; Paul Withers; Meredith Elrod; Xiaohua Fang; Francisco González-Galindo; Stephen Bougher; Geoffrey Jenkins
Journal:  Atmosphere (Basel)       Date:  2020-05-19       Impact factor: 2.686

  1 in total

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