#SpaceSciRev
Paul K. Byrne, Claire Marie Guimond, Peter A. Cawood, et al. What the Solar System Can Teach Us About Rocky Exoplanets. #SpaceSciRev 222, 72 (2026). doi.org/10.1007/s112... #OpenAccess
I said I'd do a thread about my new Space Science Reviews paper, so here it is!

This is part of a collection of papers arising from a meeting at the International Space Science Institute in Bern in 2024: a workshop to better understand rocky extrasolar planets.

A 🧵:
September 24, 2026 at 8:22 AM
#OpenAccess #ReviewArticle
Nada Al-Haddad & Noé Lugaz. The Magnetic Field Structure of Coronal Mass Ejections: A More Realistic Representation. #SpaceSciRev 221, 12 (2025). doi.org/10.1007/s112... @unhresearch.bsky.social
The Magnetic Field Structure of Coronal Mass Ejections: A More Realistic Representation - Space Science Reviews
It is often accepted that the magnetic field structure of coronal mass ejections (CMEs) is accurately represented by the highly twisted circular cross-section magnetic flux rope model, which is the ba...
doi.org
February 4, 2025 at 6:23 PM
Everything you always wanted to know about #SMILE... Read this Editorial to a collection on the "Solar Wind Magnetosphere Ionosphere Link Explorer (SMILE)" by C. Philippe Escoubet, Chi Wang, Colin Forsyth & James L. Burch in #SpaceSciRev 222, 2 (2026) doi.org/10.1007/s112...
T-8️⃣ days until Vega-C takes Smile on a ride to space 🚀

This European-Chinese mission will give us our first complete look at how Earth's magnetosphere reacts to the material that the Sun sends in our direction.

Here are the top 3️⃣ questions it aims to answer 👉 www.esa.int/Science_Expl...

🔭 🧪 ☀️
April 1, 2026 at 10:33 AM
Second article in #Switchbacks collection published:
Peter F. Wyper, Jonathan Squire, Etienne Pariat et al. Magnetic Switchback Formation: A Review of Proposed Mechanisms. #SpaceSciRev 222, 43 (2026). doi.org/10.1007/s112... #OpenAccess
Magnetic Switchback Formation: A Review of Proposed Mechanisms - Space Science Reviews
Magnetic switchbacks are large amplitude deflections of the magnetic field within the solar wind. They are Alfvénic in character and so are associated with a spike in velocity and a generally small variation in local plasma density. Early orbits of Parker Solar Probe revealed that the solar wind near the Sun is dominated by these structures, and therefore, they may be playing an important role in the energy budget and acceleration of the young solar wind. In this review, we present an overview of different mechanisms that have been proposed for how switchbacks could be formed. We group the mechanisms by whether they predominantly act in the low solar atmosphere or within the solar wind (in situ). We focus on mechanisms that can create reversals of the ambient magnetic field direction and, thus, account for the most extreme perturbations. The general consensus is that mechanisms in the lower solar atmosphere do not form such reversals on their own but provide the seed perturbations, flows, or particle beams necessary for in situ mechanisms to create switchbacks within the solar wind. Switchback observations thus likely contain an imprint of the coronal source of the seed perturbation or flow, which is evolved further locally by one of several plausible in situ mechanisms. We discuss the strengths and weaknesses of each mechanism and outline future observational and theoretical tests that could help differentiate between them.
doi.org
May 5, 2026 at 11:02 AM
Read all about "The #BepiColombo mission to Mercury" here in Space Science Reviews' article collection: link.springer.com/collections/... — Start with Benkhoff et al.: BepiColombo - Mission Overview and Science Goals. #SpaceSciRev 217, 90 (2021). doi.org/10.1007/s112... #OpenAccess 🔭
September 2, 2026 at 12:59 PM
14 years on Mars! A current review of NASA's #Curiosity:

Vasavada, A.R., Fraeman, A.A., Grotzinger, J.P. et al. Scientific Highlights and Status of the Mars Science Laboratory Mission, Years 9 Through 12. #SpaceSciRev 222, 67 (2026). doi.org/10.1007/s112...
#OpenAccess #ReviewArticle
Scientific Highlights and Status of the Mars Science Laboratory Mission, Years 9 Through 12 - Space Science Reviews
We present the scientific highlights and status from years 9-12 of NASA’s Mars Science Laboratory mission, with its Curiosity rover. A thermochemolysis-based sample analysis revealed a variety of orga...
link.springer.com
August 25, 2026 at 2:58 PM