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exoplanet
Trends
- 1Radio Waves From Alien Planet Could Be Cosmic First▼Radio Waves Coming From an Alien Planet May Be a Cosmic First https://www.nytimes.com/2026/09/29/science/space/exoplanet
Astronomers report detecting radio waves that may originate from an exoplanet, potentially the first such detection ever made. If confirmed, the signal would suggest the distant planet has a magnetic field, a property never directly observed on a world outside our solar system. The finding is drawing attention from space and astronomy enthusiasts following coverage by major science outlets, with researchers emphasising that further observations are needed to verify the origin of the emission.
- 2Keck Observatory data reveals youngest exoplanet yet▼Data from Hawaiʻi’s W. M. Keck Observatory reveals youngest planet outside solar system
Data gathered at Hawaiʻi's W. M. Keck Observatory has led to the identification of what researchers describe as the youngest planet found outside our solar system. The discovery, reported from the observatory atop Maunakea, offers scientists a rare chance to study a planet in the earliest stages of its formation, and is drawing attention for Hawaiʻi's role in the finding.
- 3First direct radio signal detected from planet beyond solar system▼Reseachers detect a direct radio signal from planet beyond solar system for the first time
Researchers have reported detecting a direct radio signal from a planet outside the solar system for the first time. The announcement is being widely shared as a potential milestone in the study of exoplanets, since radio emissions have previously been observed mainly from stars and other cosmic objects rather than from planets themselves. Details about which planet was involved and how the signal was confirmed have not yet been widely reported.
- 4NASA's Roman Space Telescope sees starlight for the first time▼NASA’s new Roman Space Telescope sees starlight for the first time
NASA's Nancy Grace Roman Space Telescope has captured starlight for the first time, a key early test of its optics and instruments. The milestone marks progress for the wide-field observatory designed to survey vast stretches of the sky, study dark energy and hunt for exoplanets as it moves toward full science operations.
- 5First radio waves detected from an exoplanet hint at alien auroras●First radio waves seen from an exoplanet hint at otherworldly auroras # science # astronomy https://www. sciencenews.org
Astronomers have picked up radio waves from an exoplanet for the first time, a signal that could indicate auroras similar to those seen on Earth and the solar system's giant planets. The detection opens a new way to study magnetic fields and atmospheres of planets orbiting other stars, and scientists say future observations could reveal more about potentially habitable worlds far beyond our solar system.
- 6Are We Ready to Find Life on Other Planets?●We're looking for life on other planets. Are we ready to find it? https://www.npr.org/2026/09/27/nx-s1-5967513/were-look
NPR examines whether humanity is prepared for the discovery of life beyond Earth. The piece explores how scientists searching for biosignatures on distant planets would confirm — and communicate — such a find, and what it would mean for society. It asks whether our scientific methods, institutions, and public discourse are equipped to handle evidence that could reshape humanity's understanding of its place in the universe.
- 7Harvard Team Detects Radio Signal From Exoplanet▼Harvard Scientists Detect Radio Signal Coming Directly From Planet Outside the Solar System
Harvard scientists report detecting a radio signal apparently coming directly from a planet outside the solar system. If confirmed, it would be a rare example of a radio emission traced to an exoplanet, possibly generated by the planet's magnetic field interacting with its star. Astronomers say such detections could open a new way to study distant planets, though further observations are needed to verify the signal's origin.
- 8
Astronomers report the first detection of radio signals coming from Beta Pictoris b, a giant exoplanet about 63 light-years away orbiting the star Beta Pictoris. The detection, made with radio telescopes, is being described as a breakthrough because radio emissions from planets outside our Solar System are extremely faint and rarely captured, opening a new way to study distant worlds.
- 912-year time-lapse shows four planets orbiting a distant star●A 12-year sequence of telescope images of a star and four planets orbiting
Astronomers have released a time-lapse built from 12 years of telescope images showing a star with four planets orbiting around it. The sequence captures the planets moving along their orbits, offering a rare direct visual of an exoplanet system in motion. Space enthusiasts are sharing the footage widely, calling it a striking illustration of how exoplanet imaging has matured over the past decade.
- 10
A proposed NASA telescope could detect rainbow-like optical phenomena, known as glory effects, in the atmospheres of planets orbiting other stars, according to Scientific American. Spotting these colorful patterns would reveal details about exoplanet atmospheres, such as the presence of water droplets or other particles, offering a new way to study potentially habitable worlds far beyond our solar system.
- 11
Astronomers have reported detecting a radio signal from Beta Pictoris b, a giant exoplanet orbiting the young star Beta Pictoris about 63 light-years from Earth. The observation, covered by science outlets, is drawing attention because radio emissions from a planet beyond the solar system could offer a new way to study exoplanets' magnetic fields and atmospheres.
- 12Radio signals detected from planet beyond Solar System▼Scientists have detected radio signals from a planet beyond our Solar System
Scientists report detecting radio signals originating from a planet outside our Solar System, according to BBC Sky at Night Magazine. The finding is drawing attention because radio emissions from an exoplanet would mark a new way of studying distant worlds, potentially revealing details about their magnetic fields and atmospheres. Details about which planet was observed and how the signal was confirmed have not yet been widely reported.
- 13Hubble Turns to Sigma Orionis to Study Planet-Forming Disks●What is Hubble observing? Target: -SIG-ORI Target Category: Exoplanets And Exoplanet Formation Research Program: Photoev
The Hubble Space Telescope is currently observing Sigma Orionis, a young multiple star system in the Orion constellation, as part of a research programme on photoevaporating disks. The study uses the WFC3 instrument to probe disks in their final evolutionary phase, shedding light on how radiation from massive stars strips away the material from which planets form.
- 14Astronomers Detect Possible Radio Waves From Exoplanet Beta Pictoris b▼Radio Waves From Beta Pictoris b May Be a Cosmic First
Astronomers may have picked up radio emissions from Beta Pictoris b, a young gas giant orbiting a star about 63 light-years from Earth. If confirmed, it would be the first time radio waves have been detected from an exoplanet, offering a new way to study planets beyond the solar system. Scientists are urging caution until independent observations verify the signal.
- 15Roman Space Telescope's Coronagraph Switched On for First Time●Koronograf Kosmicznego Teleskopu Nancy Grace Roman uruchomiono po raz pierwszy. NASA poinformowała 30 września o udanych
NASA announced on 30 September that the coronagraph aboard the Nancy Grace Roman Space Telescope has been successfully powered on for the first time. The instrument is designed to block out blinding starlight so that faint planets orbiting other stars can be photographed directly. Astronomy watchers welcomed the milestone, calling it a key step toward imaging Earth-like exoplanets once the telescope begins operations.
- 16Astronomers detect first radio signal from an exoplanet●Astronomers pick up first-ever radio signal from an exoplanet — but it’s not aliens
Astronomers have picked up the first-ever radio signal originating from a planet outside our solar system, according to CNN. The signal is believed to come from a distant exoplanet, but researchers stress it has a natural explanation and is not evidence of alien life. The detection marks a milestone in the search for and study of planets orbiting other stars, opening a new way to observe distant worlds.
- 17Gas Giant HD 224538 b Profiled in NASA Exoplanet Data●Name: HD 224538 b A giant planet composed mainly of gas. Distance from Earth: 258 light-years Year discovered: 2016 Disc
The exoplanet HD 224538 b, a gas giant located 258 light-years from Earth, is drawing attention after a profile of its details circulated among space enthusiasts. Discovered in 2016 by multiple observatories, the planet has a mass of roughly 2,076 Earths and an orbital period of about 1,202 days. NASA's Eyes on Exoplanets visualization tool lets users explore the distant world directly.
- 18Cool Lava Planet Found to Have an Atmosphere●This Cool Lava Planet Has an Atmosphere https://nautil.us/this-cool-lava-planet-has-an-atmosphere-1285436/ # Science # A
Astronomers report that a lava-covered exoplanet, described as unusually cool for its molten surface, appears to hold onto an atmosphere. The finding is notable because atmospheres on rocky worlds orbiting close to their stars are typically stripped away, so detecting one could offer clues about how planets retain gases in extreme environments. It is being shared among space and astronomy enthusiasts as an intriguing exoplanet discovery.
- 19
Astronomers reviewing the prospects for life on ancient exoplanets suggest that many older alien worlds may never have progressed beyond microbial mats and slime, despite having had billions of years to evolve complex organisms. The idea is that planetary conditions on older worlds could keep biology stalled at a simple stage indefinitely, meaning the absence of signals from intelligent civilizations may reflect a common evolutionary bottleneck.
- 20NASA Examines Composition of Extreme Debris Disks Across Time●Composition of Extreme Debris Disks Across Time
NASA has released new findings on the makeup of extreme debris disks, the dusty rings around young stars produced by collisions between planetary bodies. By studying these disks at different ages, researchers aim to understand how planetary systems, including our own, evolved over billions of years. The work offers rare insight into the violent early stages of planet formation.
- 21NASA Tests Roman Telescope Guidance, Captures First Coronagraph Image▼NASA Checks Roman Guidance System, Takes First Coronagraph Observation
NASA has checked the guidance system of its Nancy Grace Roman Space Telescope and recorded the first observation with its coronagraph instrument. The milestone tests the technology designed to block starlight so the telescope can directly image planets outside the solar system. Engineers will now assess how the systems perform ahead of the mission's science operations.