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    You are at:Home»Environment»JWST spots most distant galaxy ever, pushing the limits of the observable universe
    Environment

    JWST spots most distant galaxy ever, pushing the limits of the observable universe

    onlyplanz_80y6mtBy onlyplanz_80y6mtJanuary 29, 2026004 Mins Read
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    JWST spots most distant galaxy ever, pushing the limits of the observable universe

    The farthest galaxy ever detected, MoM-z14.

    NASA/ESA/CSA/STScI/Rohan Naidu/M.I.T. (image); Joseph DePasquale/STScI (image processing)

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    January 28, 2026

    2 min read

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    JWST spots most distant galaxy ever, pushing the limits of the observable universe

    The galaxy MoM-z14 could offer clues to what the universe looked like in its early infancy

    By Jackie Flynn Mogensen edited by Claire Cameron

    The farthest galaxy ever detected, MoM-z14.

    NASA/ESA/CSA/STScI/Rohan Naidu/M.I.T. (image); Joseph DePasquale/STScI (image processing)

    In a galaxy far, far away, there lie clues to the cosmic dawn—the first few hundreds of millions of years in our 13.8-billion-year-old universe’s early history. On Wednesday astronomers on announced that a bright galaxy called MoM-z14 that was found using NASA’s James Webb Space Telescope (JWST) is the farthest yet detected, existing just 280 million years after the big bang.

    “With Webb, we are able to see farther than humans ever have before, and it looks nothing like what we predicted, which is both challenging and exciting,” said Rohan Naidu, an astronomer at the Massachusetts Institute of Technology and the lead author of a preprint paper detailing MoM-z14’s discovery that will soon be published in the overlay journal Open Journal of Astrophysics, in a statement in NASA’s announcement.

    The galaxy, the light of which has taken more than 13 billion years to reach our telescopes, is brighter, denser and more chemically rich than astronomers had expected, according to NASA.

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    To pinpoint galaxies like MoM-z14, astronomers use redshift. Essentially, this is the measure of how stretched the light coming from an object is as a result of that object moving away from our perspective as the universe expands. The higher the redshift, the farther the object is. In MoM-z14’s case, it has a redshift of 14.4—a record, Scientific American columnist Phil Plait noted late last year.

    But records are made to be broken. And NASA said it fully expects this new JWST achievement to be surpassed in the not-too-distant future as its observations improve.

    Regardless, MoM-z14 could offer new clues to the early universe, including, for instance, why it and other early galaxies are so bright.

    “It’s an incredibly exciting time, with Webb revealing the early universe like never before,” said Yijia Li, a Pennsylvania State University graduate student, who also contributed to the research, in the same statement, “and showing us how much there still is to discover.”

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    I’ve been a Scientific American subscriber since I was 12 years old, and it helped shape the way I look at the world. SciAm always educates and delights me, and inspires a sense of awe for our vast, beautiful universe. I hope it does that for you, too.

    If you subscribe to Scientific American, you help ensure that our coverage is centered on meaningful research and discovery; that we have the resources to report on the decisions that threaten labs across the U.S.; and that we support both budding and working scientists at a time when the value of science itself too often goes unrecognized.

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