Martian ionospheric response during the May 2024 solar superstorm

J Jacob Parrott B Beatriz Sanchez-Cano H Håkan Svedhem O Olivier Witasse D Dikshita Meggi C Colin Wilson A Alejandro Cardesín-Moinelo I Ingo Müller-Wodarg

Abstract

Abstract Solar energetic events can have considerable effects on planetary ionospheres. However, the erratic nature of these solar energetic events make observations difficult. Here we show a mutual radio occultation observation, which serendipitously occurred just 10 minutes after a large solar flare impacted Mars. This resulted in the largest lower ionospheric layer ever recorded, where it was 278% its typical size. We used in-situ soft x-ray irradiance measurements to show a threefold increase in flux. This infers a different relation of soft X-ray to this layer’s density than previously thought, with variations depending on the amount of spectrum ‘hardening’ leading to the increase of ionisation from secondaries.

Article Details

Volume / Issue Vol. 17, Issue 1
Published March 05, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

J

Jacob Parrott

B

Beatriz Sanchez-Cano

H

Håkan Svedhem

O

Olivier Witasse

D

Dikshita Meggi

C

Colin Wilson

A

Alejandro Cardesín-Moinelo

I

Ingo Müller-Wodarg