'Ghost particles' from space telescope wins physics Nobel

6 October 2026, 11: 10 BST. Updated 12 minutes ago.

ScienceNews Info Wire2 min read
'Ghost particles' from space telescope wins physics Nobel

6 October 2026, 11: 10 BST. Updated 12 minutes ago.

Article outline

  1. What happened
  2. The details
  3. The key numbers
  4. A closer look
  5. The bottom line

Key points

  • The Royal Swedish Academy of Sciences remarked "his vision and scientific leadership have been fundamental for the IceCube Neutrino Observatory".
  • Halzen first presented his vision for detecting neutrinos at the South Pole in 1988.
  • But IceCube is searching for much higher-energy neutrinos, those produced by violent processes far beyond our Solar System – in distant galaxies.
  • Halzen led the development of IceCube at the South Pole.
  • The Sun produces vast numbers of them: every second, billions pass harmlessly through an area the size of your fingernail.

Belgian physicist Prof Francis Halzen has won the Nobel Prize in Physics for his pioneering work on an observatory that detects particles from space, shedding light on the distant universe.

Halzen led the development of IceCube at the South Pole. It uses a cubic kilometre of Antarctic ice fitted with light sensors to detect particles called neutrinos. These carry information regarding violent, high-energy processes in the cosmos.

For context, the Royal Swedish Academy of Sciences remarked "his vision and scientific leadership have been fundamental for the IceCube Neutrino Observatory".

"Francis Halzen has led an international team of researchers and engineers who have provided us with a fantastic instrument, " remarked Mark Pearce, Chair of the Nobel Committee for Physics.

"His tenacity and scientific vision has paved the way for a new kind of astronomy, ".

Neutrinos are elusive subatomic particles. The Sun produces vast numbers of them: every second, billions pass harmlessly through an area the size of your fingernail.

Neutrinos can be thought of as astronomical messengers that point to those fundamental events.

At the observatory, most neutrinos pass straight through the ice, but occasionally one interacts with it, producing particles that offer off a telltale flash of light.

These rare signals carry clues to where the neutrinos came from and the extreme conditions that produced them – allowing scientists to investigate places that ordinary telescopes cannot easily see.

Taken together, the developments around ' Ghost particles' from space telescope wins physics Nobel point to a situation that is still moving, and the coming days should bring more clarity.

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