Surface temperatures across Earth’s poles pulse with
the seasons, as seen in this animation based on two years of data collected by
NASA’s PREFIRE (Polar Radiant Energy in the Far-InfraRed
Experiment) mission.
NASA/Chad Greene
At
the top and bottom of the planet, the seasons arrive on a schedule all their
own. Satellite data from a mission measuring infrared energy reveal just how
differently—and how dramatically—surface temperatures swing across two full
years at the poles.
In this animation, surface temperatures
across the Arctic and Antarctic pulse between cold (dark blue) and milder to
warm (lighter blue to red). Data for the animation come from NASA’s PREFIRE (Polar Radiant Energy in the
Far-InfraRed Experiment) satellites. The mission’s twin CubeSats began
collecting science data in July 2024 and have now captured two complete
seasonal cycles at each pole.
Because the two poles sit in opposite
hemispheres, their seasons occur at opposite times—and the swing between
seasons differs, too. In the Arctic, cold, dark winters give way to summers
warm enough to thaw vast stretches of tundra and sea ice. In Antarctica,
Earth’s coldest continent, summer temperatures rarely climb above freezing
before the bitter cold of winter returns.
Surface temperatures, and how they
fluctuate, offer a window into Earth’s energy budget, the net flow of energy into and out of the Earth system. Sunlight
absorbed by the surface is re-radiated as infrared heat, which bounces between
Earth’s surface and atmosphere before escaping to space. The poles play an
important role in this process. Atmospheric and ocean circulation carries
excess heat absorbed in the tropics toward the poles, where it radiates away to space, helping regulate the planet’s temperature.
“By measuring invisible heat radiating
from Earth's coldest places, PREFIRE is helping scientists understand why the
poles are changing so rapidly, and what those changes might mean for the rest
of the planet,” said Chad Greene, a glaciologist at NASA’s Jet Propulsion
Laboratory.
Scientists have long known that
far-infrared radiation accounts for nearly 60 percent of the energy Earth loses
to space, but that portion of the spectrum—invisible to human eyes—had never
been comprehensively measured on a global scale. By directly tracking this
invisible energy in near-real-time, the PREFIRE mission is helping scientists
refine models and gain a better understanding of the Earth system.
“Weather systems, river flows, shipping
routes, and ice sheet stability are all influenced by energy movement in a part
of the spectrum that only PREFIRE can see,” said Tristan L’Ecuyer, an
atmospheric scientist at the University of Wisconsin-Madison and principal
investigator of the PREFIRE mission. “Now that the invisible has been made
visible, we can begin to improve weather and climate predictions that
industries, our national defense, and Arctic communities rely on.”
Maps
courtesy of Chad Greene, NASA/JPL, using data from NASA’s PREFIRE mission. Story by Kathryn Hansen.
References
& Resources
- NASA Earthdata, PREFIRE.
Accessed August 5, 2026.
- NASA Earth Observatory
(2009) Climate and Earth’s Energy Budget. Accessed August 5, 2026.
- NASA’s Jet Propulsion
Laboratory (2025, August 15) NASA’s PREFIRE CubeSat Mission Extended. Accessed August 5, 2026.
- L'Ecuyer, T.S., et
al. (2021) The
Polar Radiant Energy in the Far Infrared Experiment. Bulletin of the American Meteorological Society, 102(7).

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