Scientist who hunts mysterious ghost particles in the Antarctic ice wins Nobel Prize for physics

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STOCKHOLM (AP) — Belgian-born scientist Francis Halzen won the Nobel Prize in physics Tuesday for his efforts to demystify a rare group of neutrinos, tiny cosmic particles that researchers believe offer clues to how the universe evolved.

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STOCKHOLM (AP) — Belgian-born scientist Francis Halzen won the Nobel Prize in physics Tuesday for his efforts to demystify a rare group of neutrinos, tiny cosmic particles that researchers believe offer clues to how the universe evolved.

Halzen said he had been told he was among the favorites for the prize since he first published about cosmic neutrinos in 2013. In any given year, he thought he had a 1 in 20 chance to win a Nobel.

“And I just had to live long enough, so here I am,” the 82-year-old told The Associated Press in an interview in Turin, Italy.

A portrait of Francis Halzen is shown on the screen as Eva Olsson, Ellen Moons, and Mark Pearce announce as the recipient of the 2026 Nobel Prize in Physics during a press conference at the Royal Swedish Academy of Sciences, Stockholm, Sweden, Oct. 6, 2026. (Christine Olsson/TT News Agency via AP)
A portrait of Francis Halzen is shown on the screen as Eva Olsson, Ellen Moons, and Mark Pearce announce as the recipient of the 2026 Nobel Prize in Physics during a press conference at the Royal Swedish Academy of Sciences, Stockholm, Sweden, Oct. 6, 2026. (Christine Olsson/TT News Agency via AP)

Halzen, a physicist at the University of Wisconsin-Madison in the U.S., said the research was a huge collaborative effort. He was working on a new research proposal when the Nobel Physics Committee called.

“I hope that this prize will help getting it approved,” he told the committee by phone from Italy, in a call broadcast at the news conference announcing the winner. The comment elicited chuckles from the audience.

Halzen paved the way for a new kind of astronomy

Neutrinos are tiny cosmic particles with no electric charge and extraordinarily small mass, making them difficult to detect. Yet they are everywhere: They spew from stars like the sun, and trillions zip through our bodies every second.

Scientists cannot glimpse the mysterious ghost particles zooming around on their own, so they measure what happens when the particles collide with other bits of matter. Neutrinos bump into other particles only rarely, so scientists build large detectors to improve their odds of catching collisions.

Halzen had the idea to turn the vast Antarctic ice into such a detector. The Nobel committee said his work was instrumental to the construction of the IceCube Neutrino Observatory in Antarctica, which glimpsed the first high-energy neutrinos from faraway galaxies.

“This experiment in the Antarctic is a revolutionary way of understanding the universe that we didn’t have before,” said Michael Moloney, chief executive officer for the American Institute of Physics.

When a neutrino interacts with ice in the detector, it produces a flash of light that’s picked up by sensors. The transparent ice makes it easier for scientists to find faint signals from the particles, and the sensors are buried about 8,200 feet (2,500 meters) deep to protect against interference from cosmic rays and radiation.

“People always thought this was a cute idea, right, but it would never work,” Halzen said at a news conference hosted by his university. “The greatest surprise is that we did make it work.”

Neutrinos can help scientists understand the universe

Halzen helped pull back the curtain on an elusive crew of neutrinos that scientists say carry clues about the development of other galaxies and the universe as a whole.

In this handout photo provided by 'Bergamo Scienza 2026', physicist Francis Halzen speaks during a presentation on the IceCube Neutrino Observatory at the BergamoScienza science festival in Bergamo, Italy, Sunday, Oct. 4, 2026. Halzen was awarded the Nobel Prize in Physics on Tuesday, Oct. 6, for his contributions to the IceCube Neutrino Observatory and the discovery of high-energy neutrinos of astrophysical origin. (Laura Pietra/Bergamo Scienza 2026 via AP)
In this handout photo provided by 'Bergamo Scienza 2026', physicist Francis Halzen speaks during a presentation on the IceCube Neutrino Observatory at the BergamoScienza science festival in Bergamo, Italy, Sunday, Oct. 4, 2026. Halzen was awarded the Nobel Prize in Physics on Tuesday, Oct. 6, for his contributions to the IceCube Neutrino Observatory and the discovery of high-energy neutrinos of astrophysical origin. (Laura Pietra/Bergamo Scienza 2026 via AP)

He said the work was painstakingly slow because the team had to differentiate between neutrinos from the cosmos and neutrinos that are emitted in Earth’s atmosphere.

“We actually detect 3,000 charged particles every second, and in these 3,000 a second, we have to find one every day, then like one a month we are totally sure of. That is the mathematics of the problem.”

The research showed “that neutrino astronomy is possible — that it exists and it can be done,” Halzen told AP. “Where it leads, we will see. But no window on the universe has ever been a disappointment.”

He likened the Antarctic observatory to “a big eye made out of ice that can look at the universe in neutrinos, rather than in light.”

Supported by the National Science Foundation and run by Halzen’s university in Wisconsin, the IceCube Neutrino Observatory involves more than 400 scientists in 14 countries.

“IceCube is like no other telescope in the world,” the university’s interim chancellor, Eric M. Wilcots, said in a news release. “And there is no other scientist quite like Francis Halzen, whose idea to create a neutrino detector under almost a mile of ice has led to a remarkable multinational and multi-institutional scientific collaboration and a fundamental shift in how we think about the universe.”

In a post on social media, Belgian Prime Minister Bart De Wever said Halzen is the 11th Belgian to win a Nobel Prize. De Wever called the award “recognition for a lifetime dedicated to shedding light on the great mysteries of the cosmos through its smallest components.”

Prize money is about $1.2 million

Ellen Moons, secretary-general of the Royal Swedish Academy of Sciences, announced the award in Stockholm. She is the first woman to head the prestigious academy and present the award.

The prize money this year is 12 million Swedish kronor (about $1.2 million), whether for an individual, a small group of laureates or an organization.

Physicist Francis Halzen flashes a victory sign in his hotel in Turin, Italy, Tuesday, Oct. 6, 2026, after he was awarded the Nobel Prize in Physics for his contributions to the IceCube Neutrino Observatory and the discovery of high-energy neutrinos of astrophysical origin. (AP Photo/Luca Bruno)
Physicist Francis Halzen flashes a victory sign in his hotel in Turin, Italy, Tuesday, Oct. 6, 2026, after he was awarded the Nobel Prize in Physics for his contributions to the IceCube Neutrino Observatory and the discovery of high-energy neutrinos of astrophysical origin. (AP Photo/Luca Bruno)

Last year, three scientists won the Nobel Prize in physics for research on the strange behavior of subatomic particles called quantum tunneling that enabled the ultrasensitive measurements achieved by MRI machines and laid the groundwork for better cellphones and faster computers.

The announcements of this year’s prizes began Monday with the Nobel Prize in medicine being awarded to three scientists whose work led to a tool that uses light to help unravel how the brain works.

This week’s awards continue Wednesday with the chemistry prize and literature on Thursday. After Friday’s peace prize is awarded, the Nobel Memorial Prize in Economic Sciences will be announced Monday.

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Dazio reported from Berlin, and Ramakrishnan reported from New York. Associated Press journalists Alexa St. John in Detroit; Scott Bauer in Madison, Wisconsin; Colleen Barry in Milan; and Luca Bruno in Turin, Italy, contributed to this report.

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AP Nobel Prizes: https://apnews.com/hub/nobel-prizes

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