Press Release from NAM 2026
Work by Lana Williams (Lancaster University) was the subject of a press release at the National Astronomy Meeting 2026.
The press release can be read here: https://www.ras.ac.uk/news-and-press/research-highlights/nam-2026-solar-storms-may-alter-martian-weather-during-dust
Lana is also scheduled to give a talk at the Europlanet Science Congress 2026: https://meetingorganizer.copernicus.org/EPSC2026/EPSC2026-221.html
Please read below for details on this work.
Do Solar Energetic Particle events impact lower-atmospheric temperatures on Mars?
By Lana Williams (Lancaster University)
The martian atmosphere is sensitive to disturbances in interplanetary space due to the absence of a strong planetary magnetic field. Solar energetic particle (SEP) events comprise high-energy, electrically-charged sub-atomic particles and are produced during solar flares and coronal mass ejections. Previous work has shown that SEPs result in diffuse aurorae, disruption of radio propagation, the dispersion of atmospheric compounds, and the ionisation of atmospheric layers. In this study, we explore the relationship between SEP events and lower-atmospheric heating at Mars. Five SEP events with durations of four days or longer were identified in the years 2018-2021. Measurements from the Mars Atmosphere And Volatile EvolutioN (MAVEN) mission and the Trace Gas Orbiter (TGO) spacecraft are compared to atmospheric temperature profiles derived from the Mars Climate Database. Specifically, Mars’ lower-atmospheric temperature profiles before, during and after the SEP events are analysed. No strong evidence is found that indicates SEP events lead to the heating of Mars’ atmosphere. However, in the one case, a SEP event occurred concurrently with an expanding global dust storm. In this case, a clear heating effect is observed, but further research is required to attribute atmospheric temperature variations as a result of the global dust storms and SEP events where the two occur simultaneously.