Monday, July 27, 2026

JWST Could Spot Volcanic "Exo-Ios" Around Super-Jupiters

Artist's concept of SIMP 0136+0933 and its aurorae. (Credits: NASA, ESA, CSA, and Joseph Olmsted (STScI))

Jupiter’s moon, Io, is the most volcanically active planetary body in the solar system, boasting hundreds of active volcanoes spewing molten lava into space. This occurs from a process called tidal heating where Jupiter’s massive gravity constantly stretches and compresses the much smaller moon during the latter’s non-circular orbit. However, a lesser-known fact is that Io’s volcanic gases fuel Jupiter’s aurorae by traveling along Jupiter’s magnetic field lines, resulting in Jupiter’s bright aurorae observed by spacecraft and Earth-based telescopes. But what if this same phenomenon could be used to detect Io-like exomoons, also called exo-Ios, orbiting Jupiter-like exoplanets?



Chang'e-6 Samples Provide an Ancient Record of the Moon's Far Side.

Schematic illustration of the contrasting solar wind environments experienced by the lunar nearside and farside under the influence of Earth's magnetosphere. Credit: Zhang, X. et al. (2026)

The samples returned by the Chang'e-6 mission from the far side of the Moon reveal that the two hemispheres have had rather different experiences when it comes to space weather.



Little Red Dots Could Be Ancient Globular Clusters, Each Dominated by a Super-Massive Star

One of the JWST's confounding Little Red Dots is in the left panel, while the globular cluster (GC) 47 Tucanae occupies the right panel. Could these objects be the same thing at different points in evolution? Image Credit: NASA, ESA, CSA, STScI, Dale Kocevski/Colby College, ESO.

Little Red Dots are one of the mysteries uncovered by the JWST. Astronomers have been trying to figure out what they are, and have come up with multiple possibilities. New research says they could be ancient Globular Clusters with supermassive stars in their centers.



How NASA Plans to Build the Habitable Worlds Observatory

Artist's rendering of the HWO. Credit - NASA's Goddard Space Flight Center Conceptual Image Lab

We’ve been covering the journey of the Habitable Worlds Observatory for some time now. Over the past few years, it's gone from a proposal to a relatively fleshed-out plan for how and what the next Great Observatory should do—in this case, look at and characterize potentially habitable exoplanets. Back in August 2024, NASA set up the HWO Technology Maturation Project Office (TMPO) to coordinate the technological and scientific development needed to make the mission a success. They recently released a comprehensive plan for the first steps of that process in pre-print form on arXiv, and it’s very clear on what needs to happen before the Mission Concept Review (MCR) at the end of the decade.



Sunday, July 26, 2026

Black Hole Collisions Tell a Tale of Repeating Mergers

GW250114, a powerful collision between two black holes recently observed in gravitational waves. Scientists are studying black holes to find out if they are "first-generation" or "second-generation" creations made during collisions. Credits: Image credit: Aurore Simonnet (SSU/EdEon)/LVK/URI

A black hole merger is one of the Universe's most energetic and massive events. During such a collision, two black holes orbit closer and closer until they collide and become a much more massive black hole. The event also gives off radiation and, as it happens, gravitational waves. They help tell the story of the two objects involved in the collision.



New Research Shows How Clouds Shape the Interiors of sub-Neptunes

An artist's representation of two scenarios for a sub-Neptune planet's atmosphere-interior interface. Credit: Hailey Nelson/ASU

Scientists at ASU's School of Earth and Space Exploration have demonstrated how clouds in a sub-Neptune's atmosphere shape the interior structure of the planet.



UCF Researchers Are Developing Tools to Help Find Habitable Planets

Visualization of the Habitable World's Observatory (HWO). Credit: NASA SVS/Jonathan North

Through the Photonics-Enabled Exoplanet Spectroscopic System (PEEPSS) program, researchers are developing a technology that will assist NASA's planned Habitable World's Observatory (HWO).