UK in pole position to lead key instrument in NASA’s hunt for Earth-like worlds


UK in pole position to lead key instrument in NASA's hunt for Earth-like worlds
A conceptual design of the Habitable Worlds Observatory. Credit: NASA

UK astronomers are a step closer to playing a leading role in NASA’s search for alien life in the coming decades as they continue developing one of the core instruments of the Habitable Worlds Observatory (HWO). The exciting mission—the U.S. space agency’s next flagship space telescope after the Nancy Grace Roman Space Telescope—is expected to launch in the 2040s.

The UK-led plans follow a series of instrument studies, which have been shared with NASA and are helping shape the mission as it moves into its next phase of development.

“The Habitable Worlds Observatory is one of the most exciting space science missions now under development,” said Martin Barstow, a professor at the University of Leicester, who is playing a leading role in the UK’s involvement and gave an update on the mission at the Royal Astronomical Society’s National Astronomy Meeting in Birmingham.

“It will tackle one of the biggest questions in science: Are we alone in the universe? By searching for Earth-like planets and studying their atmospheres, the HWO will look for evidence of life beyond our solar system.”

UK in pole position to lead key instrument in NASA's hunt for Earth-like worlds
How the HWO might see the Solar System if it were at a distance of 30 light-years. Credit: NASA

A telescope built for extreme precision

Seen from a distance, a planet like Earth would be a faint dot right next to a blinding sun 10 billion times brighter. To image this mote next to a flamethrower, HWO’s 8-meter (26-foot) mirror must be held stable to within the width of an atom, and the light from the sun blocked out.

Barstow added, “The UK has a long history of making major contributions to NASA’s flagship observatories, from Hubble to the James Webb Space Telescope, and we are now in a strong position to lead the development of one of HWO’s core scientific instruments.”

Vincent Van Eylen, associate professor of exoplanets at UCL’s Mullard Space Science Laboratory, called HWO “one of the most exciting missions of my lifetime.”

He added, “It will be the first telescope designed to search for evidence of life on distant planets. Imagine for a moment it finds evidence of life out there. What an achievement that would be!

“It’s fantastic that the UK Space Agency is ensuring that UK scientists and engineers will have a leading role in this exciting project.”

Britain’s bid for a core role

The UK is leading development of HWO’s High Resolution Imager (HRI) and Multi-Object Spectrograph (MOS), which are expected to be core instruments on the telescope.

Researchers now plan to ramp up their efforts and develop the necessary technologies to make the instruments a reality. This latest development builds on the previous studies but significantly expands the scale.

Dr. Caroline Harper, head of space science at the UK Space Agency, said, “Habitable Worlds Observatory is being designed to answer whether we are alone in the universe and will require technological advances as well as scientific breakthroughs. That’s why we’re backing UK scientists and engineers to lead one of its core instruments.”

The UK team includes scientists from Durham University, The Open University, the University of Leicester, RAL Space, the University of Portsmouth, the University of Oxford, the UK’s Astronomy Technology Centre (ATC) and UCL’s Mullard Space Science Laboratory.

A long wait raises risks

However, with the mission not expected to launch for another two decades, it is the existing generation of younger researchers—currently facing huge uncertainty against the backdrop of widespread funding cuts—who will be the UK’s science leaders when it’s ready.

“The UK Space Agency is supporting instrument development for HWO, but that would be a waste if there is not a community of scientists ready to exploit it in the 2040s,” Barstow cautioned.

“The decisions we make over the next few years will determine whether UK scientists are at the forefront of those discoveries for decades to come.”

He said sustained investment would be needed to maintain the scientific expertise and technical capability required to deliver the UK’s planned contribution.

“The proposed cuts affecting key institutes and research groups involved in the mission could weaken Britain’s ability to lead development of one of the world’s leading observatory’s core instruments and fully exploit the science when HWO begins operations in two decades’ time,” Barstow added.

Searching nearby worlds for life

The HWO’s headline scientific goal is to search for Earth-like planets around nearby stars and examine their atmospheres for signs of life.

But rather than surveying the entire galaxy, it will focus on nearby stars within our cosmic neighborhood. At distances of around 30 light-years, astronomers expect the observatory to be capable of directly studying Earth-like planets and searching their atmospheres for possible signs of life.

Like the Hubble Space Telescope and James Webb Space Telescope (JWST) before it, HWO will also serve as a general-purpose observatory, allowing astronomers to study everything from planets and stars to galaxies and the evolution of the universe.

NASA is leading the mission, but international partners will provide major elements of the observatory. The UK aims to design and build one of the cameras that will sit at the telescope’s focal plane and collect the light needed to carry out its observations, while also contributing to other systems.

Over the past three years, the UK astronomy community has held a series of national workshops, supported by the Science and Technology Facilities Council (STFC), to develop scientific priorities and bring together universities, research laboratories and industry.

UK researchers previously played important roles with the Hubble mission and led the European consortium that developed the Mid-Infrared Instrument (MIRI) on JWST.

The next phase of UK instrument studies is expected to begin next month as NASA continues developing HWO in collaboration with researchers across the world.

HWO will be the first in NASA’s next generation of flagship “Great Observatories,” building on the legacy of Hubble and Webb while seeking to answer one of humanity’s oldest questions: whether life exists elsewhere in the universe.

Who’s behind this story?


Swati Mestri

Swati Mestri

Swati Mestri holds a bachelor’s degree in Electronics Engineering and has worked as a content editor since 2019. She has experience editing research documents across technology, health care, and materials science, and has a particular interest in technology and space.

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Robert Egan

Robert Egan

Bachelor’s in mathematical biology, Master’s in creative writing. Well-traveled with unique perspectives on science and language.

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UK in pole position to lead key instrument in NASA’s hunt for Earth-like worlds (2026, July 24)
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