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'It would be a fundamental breakthrough': Mysterious dark matter may interact with cosmic 'ghost particles'
New research puts forward compelling new evidence that dark matter interacts with cosmic "ghost particles" called neutrinos.
The particle in question, known as a sterile neutrino, was supposed to only interact with gravity and have zero interactions ...
The most direct probe of λ3 comes from Higgs-boson pair production (HH). HH production happens most often by the fusion of ...
It’s often said in science that extraordinary claims require extraordinary evidence. Recent measurements of the mass of the elementary particle known as the W boson provide a useful case study as to ...
In the world of particle physics, where scientists unravel the mysteries of the universe, artificial intelligence (AI) and machine learning (ML) are making waves with how they're increasing ...
Alfredo has a PhD in Astrophysics and a Master's in Quantum Fields and Fundamental Forces from Imperial College London. Alfredo has a PhD in Astrophysics and a Master's in Quantum Fields and ...
Physicists may have yet another fundamental particle left to discover. When physicists at the Large Hardon Collider discovered the Higgs boson back in 2012, they’d found the last missing piece of the ...
Once a surprise to physicists, these particles are useful tools inside and outside the realm of particle physics.
Astrophysicists have provided the most direct evidence yet that Dark Matter does not constitute ultramassive particles as is commonly thought but instead comprises particles so light that they travel ...
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