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There is strong evidence for a new force of nature, said physicists working on an international science experiment.
Researchers from the UK s Science and Technology Facilities Council cited a much-anticipated result from the Fermi National Accelerator Laboratory in Illinois, in the US.
The Muon g-2 experiment provided evidence that elementary particles, called muons, are not behaving in the way they are supposed to, according to the leading theory of physics, known as the Standard Model.
It is an exciting time to be a particle physicist. We know that our current understanding of the universe is incomplete
Prof Mark Thomson, executive chair of the Science and Technology Facilities Council
New evidence of particles could change the way we understand the universe
By Seth Borenstein article
Fermi National Accelerator Laboratory(Fermilab) and Robert R. Wilson s Acqua Alle Funi sculpture, in Batavia, Illinois on MAY 12, 2013. (Photo By Raymond Boyd/Getty Images)
Preliminary results from two experiments suggest something could be wrong with the basic way physicists think the universe works, a prospect that has the field of particle physics both baffled and thrilled.
Tiny particles called muons aren’t quite doing what is expected of them in two different long-running experiments in the United States and Europe. The confounding results if proven right reveal major problems with the rulebook physicists use to describe and understand how the universe works at the subatomic level.
Preliminary results from two experiments suggest something could be wrong with the basic way physicists think the universe works, a prospect that has the field of particle physics both baffled and thrilled.
Tiny particles called muons aren’t quite doing what is expected of them in two different long-running experiments in the United States and Europe. The confounding results if proven right reveal major problems with the rulebook physicists use to describe and understand how the universe works at the subatomic level.
“We think we might be swimming in a sea of background particles all the time that just haven’t been directly discovered,” Fermilab experiment co-chief scientist Chris Polly said in a press conference. “There might be monsters we haven’t yet imagined that are emerging from the vacuum interacting with our muons and this gives us a window into seeing them.”
Seth Borenstein
Preliminary results from two experiments suggest something could be wrong with the basic way physicists think the universe works, a prospect that has the field of particle physics both baffled and thrilled.
Tiny particles called muons aren’t quite doing what is expected of them in two different long-running experiments in the United States and Europe. The confounding results if proven right reveal major problems with the rulebook physicists use to describe and understand how the universe works at the subatomic level.
“We think we might be swimming in a sea of background particles all the time that just haven’t been directly discovered,” Fermilab experiment co-chief scientist Chris Polly said in a press conference. “There might be monsters we haven’t yet imagined that are emerging from the vacuum interacting with our muons and this gives us a window into seeing them.”