As it maps the sky, NASA’s SPHEREx telescope is
finding thousands of brown dwarfs hiding in the dark. A selection is shown in
this collage of observations, listed by spectral type, distance, and
temperature in degrees Kelvin.
Zafar Rustamkulov/NASA/JPL-Caltech
NASA’s
SPHEREx (Spectro-Photometer for the History of the Universe, Epoch of
Reionization, and Ices Explorer) space telescope is shedding light on brown
dwarfs, celestial objects that blur the line between stars and exoplanets. New
findings published in The Astrophysical Journal show that these dark and cloudy
worlds have chemically rich atmospheres not unlike the giant planets in our own
solar system.
First discovered in the 1990s, brown
dwarfs form from collapsing clouds of gas, like stars do, but they aren’t hefty
enough to sustain hydrogen fusion in their cores. These dimly glowing balls of
warm gas also share characteristics with Jupiter and Saturn. In contrast to
most planets, however, brown dwarfs drift in darkness, ungoverned by a host
star and heated entirely from within.
“They’re kind of goth,” said Zafar
Rustamkulov, lead author of the new study
and a scientist at IPAC, Caltech’s science and data center in Pasadena,
California. “Unlike exoplanets, free-floating brown dwarfs are completely independent celestial
objects that will fade into eternity alone. We’re still learning how complex they are.”
Untold numbers of brown dwarfs roam the cosmos, like
the one in this artist’s concept. But only a few dozen have been studied in
detail with space-based telescopes. With the help of NASA’s SPHEREx, scientists
are in the process of analyzing thousands more.
NASA/JPL-Caltech
Only a few dozen of these “dark wanderers” have been studied in detail with
space-based telescopes. Astronomers want to observe more of them in the wild
because much of our understanding of their makeup, storminess, and evolution
comes from theoretical models.
Enter NASA’s SPHEREx, an infrared space telescope launched in March 2025 and managed by the
agency’s Jet Propulsion Laboratory in Southern California.
The study authors analyzed SPHEREx
observations of 37 nearby brown dwarfs spanning the full brown dwarf
temperature range, from about 4,000 to minus 10 degrees Fahrenheit (2,200 to
minus 20 degrees Celsius). The telescope measures their brightness in 102
different colors, from the deepest red our eyes can see, to the invisible heat
of infrared light, creating a spectrum. These spectra revealed to the study authors
chemically rich atmospheres harboring water, carbon dioxide, carbon monoxide,
and methane.
“We’re seeing the signatures of
these molecules and how they change from object to object across the entire
temperature regime,” said study coauthor J. Davy Kirkpatrick, a scientist at
Caltech’s IPAC. “Our paper concentrated on just three dozen, but we have
thousands more that we are in the process of analyzing. I really want to see
what bounds the universe places on the variety of brown dwarfs.”
“From orbit, SPHEREx sees
wavelengths of light that are basically impossible to see with telescopes on
the ground because water in Earth’s atmosphere absorbs them,” Rustamkulov said.
“We are picking up light from the deep, red clouds of brown dwarfs all over the
sky.”
Sweet spot
Spotting brown dwarfs is something
of a side project for SPHEREx. The space telescope takes about 3,600 unique
images per day to stitch into maps of the entire sky. Knowing where hundreds of millions of galaxies are
distributed across the cosmos will help scientists reconstruct what happened in
the first billionth of a trillionth of a trillionth of a second after the big
bang. As it scans the sky, the telescope also is searching for the chemical
ingredients of life and finding interstellar ice that could one day seed oceans on distant worlds.
For years, brown dwarfs have been
spotted by other observatories, including NASA’s James Webb Space Telescope and retired Spitzer Space Telescope. But thanks to its spectral coverage,
SPHEREx is now imaging thousands of them for the first time in a fruitful
region of the electromagnetic spectrum that spans deep red and infrared
wavelengths of light.
Thanks to its spectral coverage, NASA’s SPHEREx is
revealing molecules like methane (CH4), carbon dioxide (CO2), and carbon
monoxide (CO) in brown dwarf atmospheres. The telescope’s view of three
different brown dwarfs appears on the left; the depictions on the right imagine
them as Jupiter-like worlds.
Zafar Rustamkulov/International Gemini
Observatory/NOIRLab/NSF/AURA, M.H. Wong (UC Berkeley) et al. Acknowledgments:
M. Zamani
At those wavelengths, molecules carve out distinct absorption patterns in
the light shining out to space. The patterns change as brown dwarfs grow older
and colder. Some of the brown dwarfs observed by SPHEREx are in a dynamic stage
of life when their exotic clouds thin out, giving way to methane-rich
atmospheres.
“The state-of-the-art models are
capturing the general chemical trend, but when it comes to these cloudy
transitions, the models are struggling to match the data,” said Rustamkulov.
“No two brown dwarfs are alike. Even at the same temperature, their spectra
look quite distinct.”
“The findings are a call to action
to explore even more of these dark worlds,” said Kirkpatrick. “This journey has
turned many of us into accidental meteorologists. We know how hard it is to
predict weather on our own planet, and we realize it’s going to be just as
challenging to explain the phenomena we see in these bizarre, cold objects.”
More about SPHEREx
The mission is managed by JPL for
NASA’s Astrophysics Division within the Science Mission Directorate in
Washington. The telescope and the spacecraft bus were built by BAE Systems. The
science analysis of the SPHEREx data is being conducted by a team of scientists
at 13 institutions across the United States and in South Korea and Taiwan, led
by Jamie Bock, principal investigator, who is based at Caltech with a joint JPL
appointment, and by JPL’s Olivier Doré, the project scientist. Data is
processed and archived at IPAC at Caltech in Pasadena. Caltech manages JPL for
NASA. The SPHEREx dataset is freely available to scientists and the public.
For more information about the SPHEREx mission visit: https://science.nasa.gov/mission/spherex/
Source: NASA’s SPHEREx Telescope Sees Menagerie of Brown Dwarfs - NASA



