Friday, September 25, 2026

Astronomers Find a Sub-Neptune Orbiting Completely Backward Around a Red Dwarf

Artist's depiction of a planet in retrograde motion. Credit - ESO/L. Calçada

In our own solar system, all eight planets orbit our Sun in a nice, orderly fashion. None are more than 7° or so out of alignment with the equator, and all of them rotate in the same direction as the Sun itself. But that’s not the case for all solar systems, and a new paper published in Astronomy & Astrophysics from a team of researchers led by Yann Carteret, a PhD student at the University of Geneva (UNIGE), describes the first time we’ve ever found an exoplanet orbiting the opposite direction of its red dwarf parent star - and it has major implications for our understanding of planet formation theory.



Thursday, September 24, 2026

Perseverance Reveals How Complex Water Systems Shaped the Jezero Crater on Early Mars

The Perseverance rover captured the data used in this panorama of the “Margin Unit,” a geologic area that hugs the inner edge of Jezero Crater’s rim, between Oct. 8 and Oct. 16, 2023. Credit: NASA/JPL-Caltech/MSSS

A new study reveals that Jezero Crater’s enigmatic ‘Margin Unit’ was shaped by a complex sequence of ancient lakes, groundwater systems, and hydrothermal fluids.



Stanford Engineers Teach Spacecraft to "Dream" Their Way to the Space Station

A Dragon capsule approaching the ISS. Credit - NASA / Chris Cassidy

Docking with the ISS may seem simple. However, actually doing so is a showcase in how difficult orbital mechanics can be. It’s equivalent to traveling down a highway at 28,000 km/hr and parallel parking into an open garage on a multi-billion dollar laboratory traveling at the same speed. If you try to accelerate forward you actually drift up, and there’s no air friction to naturally slow you down. Oh, and if you hit the lab, everyone onboard both your craft and the station dies, and the resultant debris field could both wipe out dozens of satellites and even people on the ground. No pressure, obviously. For decades, aerospace engineers have been docking successfully using hard coded physics equations and human pilots to correct them. But now, a new paper, available in pre-print on arXiv from researchers at Stanford, is taking a shot at building an AI to perform a series of “mental simulations” that could fundamentally change how future spacecraft interact with each other.



Wednesday, September 23, 2026

Strange Galaxies in the Early Universe Were Shaped by Weird Stars

The earliest stars in the Universe began forming some 100 million years after the Big Bang. They lived fast, died young, and left behind material that got recycled into the next generations of stars. Along the way, these also influenced the evolution of their galaxies. CREDIT: NASA/STScI/A. Schaller.

Galaxies and their stars in the early Universe look a lot weirder than those we see today, and astronomers want to know why. A team of researchers at the University of Utah decided to survey certain stars in nearby galaxies as analogs of those that existed when the Universe was still in its infancy. The survey, called the "Treasury of Extremely Metal-Poor O Stars (TEMPOS), used the ultraviolet (UV) light streaming from those relatively close-by stars as detected by the Hubble Space Telescope's Cosmic Origins Spectrograph.



New Lunar Crater Offers Keys To Moon’s Shallow Subsurface

Astronaut John W. Young, commander of the Apollo 16 lunar landing mission, stands on the rim of Plum Crater while collecting lunar samples at Station 1 during the first Apollo 16 extravehicular activity (EVA-1) at the Descartes landing site.  Credit:  NASA via Wikipedia

Asteroids which strike the Moon and create new craters offer lunar scientists a window onto the workings of our natural satellite’s shallow subsurface.



JUICE Mission to Swing by Earth on September 28

Infographic showing Juice's flight past Earth with a dotted orange line. Credit: ESA

The European Space Agency’s Jupiter Icy Moons Explorer (Juice) will return to Earth on 28 September, with flight controllers guiding the spacecraft close to our home planet to alter its speed and direction en route to Jupiter.



Astronomers Directly Image the Youngest Exoplanet Ever

ARtist' image of the forming planet around Elias 2-24. Credit - W.M. Keck Observatory / A. Bernardi et al.

Most exoplanets we find have been around a long time. They’ve cleared out their orbital path (one of the requirements of planethood, as fans of Pluto well know), have their own gravitational pull, and in many cases shine with their own infrared light. But it takes a long time to get to that point - finding “young” planets is much harder. But a new paper available in The Astrophysical Journal Letters by a research team led by Andrea Bernardi of Diego Portales University in Chile describes a new paper that definitely takes the prize as the youngest exoplanet we’ve yet found.