Astronomy, Stellar, Planetary News
EXO WORLDS
Webb finds metal-poor atmosphere on giant world around red dwarf
illustration only

Webb finds metal-poor atmosphere on giant world around red dwarf

by Simon Mansfield
Sydney, Australia (SPX) Apr 04, 2026
Observations of the unusual exoplanet TOI-5205 b with the James Webb Space Telescope suggest that the giant planet's atmosphere contains fewer heavy elements than its host star, challenging conventional ideas about how such worlds form around low mass stars. The results, published in The Astronomical Journal, come from an international team led by NASA Goddard Space Flight Center astronomer Caleb Canas and including Carnegie Science researcher Shubham Kanodia.

TOI-5205 b is similar in size to Jupiter but orbits a cool red dwarf star that is only about four times Jupiter's size and roughly 40 percent the mass of the Sun. During each transit, when the planet passes in front of its star, it blocks about six percent of the star's light, giving astronomers a strong signal to probe. By dispersing this starlight with spectrographs as the planet moves across the star, the team can infer the atmospheric composition of the planet and build a picture of its formation and evolution.

Giant planets are thought to form in the rotating disk of gas and dust that surrounds a young star, with heavy elements incorporated as the planet assembles. Massive planets in close orbits around small, cool stars, sometimes called forbidden planets, are difficult to reconcile with standard models of disk mass and structure. TOI-5205 b is one of these so-called GEMS, or giant exoplanets around M dwarf stars, that appear to defy expectations based on current planet formation theories.

To better understand these objects, Kanodia, Canas and University of Tampa researcher Jessica Libby-Roberts are leading a large JWST Cycle 2 exoplanet program called Red Dwarfs and the Seven Giants. This program targets transiting giant planets around red dwarf stars to investigate their atmospheres, internal structures and origins. TOI-5205 b is one of the first worlds in this survey to be characterized in detail with Webb's infrared instruments.

Kanodia previously led work confirming the existence of TOI-5205 b in 2023, following up on NASA's Transiting Exoplanet Survey Satellite observations that initially flagged the object as a planetary candidate. The new JWST data provide the first detailed look at the planet's atmospheric composition across multiple wavelengths. The team observed three separate transits to build up sufficient signal for their analysis.

The transit spectra reveal that the atmosphere of TOI-5205 b has a lower concentration of heavy elements, relative to hydrogen, than Jupiter and other gas giants in the Solar System. In addition, the atmospheric metallicity appears to be lower than that of the host star, placing TOI-5205 b among the most metal-poor giant planets yet characterized. This combination of a relatively small host star and a metal-poor giant planet makes the system stand out from previously studied exoplanets.

The Webb observations also show signatures of methane and hydrogen sulfide in the planet's atmosphere. These molecules are expected in the cool atmospheres of gas giants, but their detection around an M dwarf planet provides important constraints on temperature and chemistry. The presence and strength of these spectral features help refine models of the planet's atmospheric structure and its carbon and oxygen inventories.

To interpret the observations, team members Simon Muller and Ravit Helled at the University of Zurich modeled the planet's internal structure to estimate its overall composition. Their calculations indicate that TOI-5205 b as a whole is roughly 100 times more metal-rich than its atmosphere appears to be from the transit spectra. This mismatch implies that most of the heavy elements are locked deep in the interior rather than mixed throughout the atmosphere.

Kanodia said that the measured atmospheric metallicity is much lower than predicted by these interior models, which use the planet's mass and radius as inputs. He and colleagues suggest that heavy elements likely migrated inward during the planet's formation and are no longer efficiently mixed with the outer envelope. In their view, the data point to a carbon-rich, oxygen-poor atmosphere whose composition differs markedly from that of the bulk planet.

The work forms part of the broader GEMS Survey, which focuses on transiting giant planets around M dwarf stars as a way to test formation scenarios across a wide range of stellar masses. Alongside Kanodia, Carnegie astronomers Peter Gao, Johanna Teske and Nicole Wallack contributed to the analysis, as did former Carnegie postdoctoral researcher Anjali Piette, now at the University of Birmingham. The collaboration spans multiple institutions and brings together expertise in observations, atmospheric modeling and interior structure calculations.

Additional co-authors include Jacob Lustig-Yaeger, Erin May and Kevin Stevenson of the Johns Hopkins Applied Physics Laboratory; Shang-Min Tsai of Academia Sinica Institute of Astronomy and Astrophysics; Dana Louie of Catholic University; Giannina Guzman Caloca of the University of Maryland; Kevin Hardegree-Ullman of Caltech; Knicole Colon of NASA Goddard Space Flight Center; Ian Czekala of the University of St. Andrews; Megan Delamer and Suvrath Mahadevan of Penn State University; Andrea Lin and Te Han of the University of California Irvine; Joe Ninan of the Tata Institute of Fundamental Research; and Gudmundur Stefansson of the University of Amsterdam. Their combined efforts have produced one of the most detailed portraits yet of a giant planet around a small, active star.

Because TOI-5205's host star is heavily spotted, the team had to correct their data for the effects of starspots that imprint wavelength-dependent signatures on the transit spectra. Bright or dark regions on the stellar surface can mimic or hide features in a planet's atmosphere if not properly accounted for. Wallack and Kanodia are now applying and validating this correction method in a more recent JWST project targeting the same planetary system, work that will be important for future studies of planets around similarly active stars.

Research Report:GEMS JWST: Transmission Spectroscopy of TOI-5205b Reveals Significant Stellar Contamination and a Metal-poor Atmosphere

Related Links
Carnegie Institution for Science
Lands Beyond Beyond - extra solar planets - news and science
Life Beyond Earth

Subscribe Free To Our Daily Newsletters
Tweet

RELATED CONTENT
The following news reports may link to other Space Media Network websites.
EXO WORLDS
Cheops spots inside out exoplanet quartet
Paris, France (SPX) Feb 16, 2026
Many students learn memory tricks to remember the order of the Solar System's planets, with rocky worlds close to the Sun and gas giants farther out. Astronomers have now found a nearby planetary system that breaks that familiar pattern. An international team led by Thomas Wilson of the University of Warwick used ESA's Characterising Exoplanet Satellite, Cheops, along with other space and ground based observatories, to study the red dwarf star LHS 1903 and its planets. LHS 1903 is a sm ... read more

EXO WORLDS
Jupiter size refined by new radio mapping

Polar weather on Jupiter and Saturn hints at the planets' interior details

Europa ice delamination may deliver nutrients to hidden ocean

Birth conditions fixed water contrast on Jupiters moons

EXO WORLDS
EXO WORLDS
Webb finds metal-poor atmosphere on giant world around red dwarf

Tough microbe study backs idea of life moving between planets

Stellar space weather may blur alien radio beacons

Study questions assumptions about hidden alien technosignals

EXO WORLDS
Solar storm supercharges Mars atmosphere and disrupts ESA orbiters

Fungi tested as space building blocks for moon and Mars

'Water bears' reveal potential for adapting, protecting Martian resources

Curiosity Blog, Sols 4798-4803: Back for More Science

EXO WORLDS
Chickpeas grown in simulated moon soil reach harvest

Astrobotic and CMU advance distributed nav system for Moon missions

Astrobotic to build lunar wheel for Italian habitation module

Far side moon soil study points to stronger ground for future bases

EXO WORLDS
Sun like stars keep equator faster than poles for life

Mauve satellite marks new step for commercial ultraviolet astronomy

ALMA survey maps cold gas maze at Milky Way core

Blazar population may power record energy neutrino

EXO WORLDS
UK and Saudi partners design climate focused Earth observation mission

LizzieSat 3 hosts HEO USA non Earth imaging payload in orbit

ASII launches national geospatial digital twin for Australian agriculture

New axis grid links complex earth data in space and time

EXO WORLDS
Ingredients of life discovered in Ryugu asteroid samples

Ryugu samples record early solar system magnetic fields

Webb observations confirm safe lunar pass for asteroid 2024 YR4

DART images show slow motion rock exchange between binary asteroids

Subscribe Free To Our Daily Newsletters




The content herein, unless otherwise known to be public domain, are Copyright 1995-2026 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. All articles labeled "by Staff Writers" include reports supplied to Space Media Network by industry news wires, PR agencies, corporate press officers and the like. Such articles are individually curated and edited by Space Media Network staff on the basis of the report's information value to our industry and professional readership. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. General Data Protection Regulation (GDPR) Statement Our advertisers use various cookies and the like to deliver the best ad banner available at one time. All network advertising suppliers have GDPR policies (Legitimate Interest) that conform with EU regulations for data collection. By using our websites you consent to cookie based advertising. If you do not agree with this then you must stop using the websites from May 25, 2018. Privacy Statement. Additional information can be found here at About Us.