Galaxy 9422 spotted by NASA JWT could be a missing link

Posted on Wednesday, October 2, 2024 by RICHARD HARRIS, Executive Editor

Looking deep into the early universe with NASA’s James Webb Space Telescope, astronomers have found something unprecedented: a galaxy with an odd light signature, which they attribute to its gas outshining its stars. Found approximately one billion years after the big bang, galaxy GS-NDG-9422 (9422) may be a missing-link phase of galactic evolution between the universe’s first stars and familiar, well-established galaxies.

Galaxy 9422 spotted by NASA's Webb, could be the potential missing link to first stars

"My first thought in looking at the galaxy’s spectrum was, ‘that’s weird,’ which is exactly what the Webb telescope was designed to reveal: totally new phenomena in the early universe that will help us understand how the cosmic story began," said lead researcher Alex Cameron of the University of Oxford. 

Cameron reached out to colleague Harley Katz, a theorist, to discuss the strange data. Working together, their team found that computer models of cosmic gas clouds heated by very hot, massive stars, to an extent that the gas shone brighter than the stars, was nearly a perfect match to Webb’s observations

"It looks like these stars must be much hotter and more massive than what we see in the local universe, which makes sense because the early universe was a very different environment," said Katz, of Oxford and the University of Chicago.

In the local universe, typical hot, massive stars have a temperature ranging between 70,000 to 90,000 degrees Fahrenheit (40,000 to 50,000 degrees Celsius). According to the team, galaxy 9422 has stars hotter than 140,000 degrees Fahrenheit (80,000 degrees Celsius). 

The research team suspects that the galaxy is in the midst of a brief phase of intense star formation inside a cloud of dense gas that is producing a large number of massive, hot stars. The gas cloud is being hit with so many photons of light from the stars that it is shining extremely brightly. 

In addition to its novelty, nebular gas outshining stars is intriguing because it is something predicted in the environments of the universe’s first generation of stars, which astronomers classify as Population III stars. 

"We know that this galaxy does not have Population III stars, because the Webb data shows too much chemical complexity. However, its stars are different than what we are familiar with - the exotic stars in this galaxy could be a guide for understanding how galaxies transitioned from primordial stars to the types of galaxies we already know," said Katz.

At this point, galaxy 9422 is one example of this phase of galaxy development, so there are still many questions to be answered. Are these conditions common in galaxies at this time period, or a rare occurrence? What more can they tell us about even earlier phases of galaxy evolution? Cameron, Katz, and their research colleagues are actively identifying more galaxies to add to this population to better understand what was happening in the universe within the first billion years after the big bang.

"It’s a very exciting time, to be able to use the Webb telescope to explore this time in the universe that was once inaccessible. We are just at the beginning of new discoveries and understanding," said Cameron.


Galaxy GS-NDG-9422 Spectrum (NIRSpec)

With its gas shining brighter than its stars, a strange galaxy found one billion years after the big bang may represent a previously-unknown phase of galactic evolution.

Amid a crowded field of galaxies captured by NASA’s James Webb Space Telescope, one otherwise inconspicuous galaxy stands out for emitting a light signature that astronomers have never seen before. Together, an observational astronomer and a theorist investigated potential causes. They concluded that the strange spectrum of galaxy GS-NDG-9422 is likely coming from its super-heated gas, not its stars. This intriguing conclusion opens up several future paths for investigation, including the connection between this odd galaxy and the universe’s first generation of stars – also predicted to be outshone by nebular gas. 

More Astronomy Gear News

47 million galaxies: A sunning new view of our universe



Why the iOptron iEQ30 Pro still matters for exoplanet transit work



Planetary Capture App for Mac Laminar 1.0 Launches



Astronomy equipment at NEAF 2026



Vespera 3 and Vespera Pro 2 are released



NEAF 2026 details



Optolong L2 Filters Tested: The April 2026 ScopeTrader Issue



Back to the Moon



ASCOM Flat Panel Buddy for Astrophotography 4-16 inch from Astro-Smart



The Al Nagler Saturnday interview with Eli Goldfine



Watusi 150 equatorial fork mount for advanced astronomy



Seeing color clearly with color science tools



Turning discarded astrophotography data into discoveries with SpacePixels



Automating Astrophotography with PULSAR



Why Maui does not want the Haleakala telescope project



Galaxies previously unseen discovered with help from physicist



Lens support system from Buckeyestargazer lands



Delta Pier tripod launches with discount



Astrophoto processing: when you've gone too far



Seestar S30 Pro review: Upgrade or not



MOTHRA telescope 1,140-lenses to map the cosmic web



How to use a telescope



The Universe, Live: Rubin Observatory Flips the Switch on Real-Time Space Monitoring



Astronomy software Meridian launches in BETA



Dwarf Mini telescope tutorial for beginners



Copyright © 2026 by Moonbeam

Address:
1855 S Ingram Mill Rd
STE# 201
Springfield, Mo 65804

Phone: 1-844-277-3386

Fax: 417-429-2935

E-Mail: hello@scopetrader.com