News
News
AMBER releases its first results
The experiment’s preliminary results explore the production cross section of the antiproton, which may provide physicists with clues in the search for dark matter
ATLAS probes uncharted territory with LHC Run 3 data
The ATLAS collaboration has released its first results from searches for new physics phenomena conducted with data from Run 3 of the LHC
LHCb investigates the properties of one of physics’ most puzzling particles
The particle, known as χc1(3872), has fascinated physicists for years. Now, the LHCb collaboration is closer to finding out what it is made up of
LHCb investigates the rare Σ+→pμ+μ- decay
The rarest hyperon decay ever observed
Going the extra mile to squeeze supersymmetry out of CMS data
Re-analysing LHC Run 2 data with cutting-edge analysis techniques allowed CMS physicists to address an old discrepancy
ATLAS dives deeper into di-Higgs
By combining multiple Higgs boson pair studies, physicists are closer to finding out how the particle interacts with itself, providing clues to the stability of the Universe
How can AI help physicists search for new particles?
The ATLAS and CMS collaborations are using state-of-the-art machine learning techniques to search for exotic-looking collisions that could indicate new physics
Bringing black hole jets down to Earth
The Fireball collaboration has used CERN’s HiRadMat facility to produce an analogue of the jets of matter and antimatter that stream out of some black holes and neutron stars
Shaking the box for new physics
The CMS collaboration has searched for new physics in a rare decay of a known particle, using an approach that can be likened to shaking a box containing a birthday present to find a clue about what’s inside
Probing matter–antimatter asymmetry with AI
Using a cutting-edge AI algorithm, the CMS collaboration has obtained the first evidence of CP violation in the decay of the strange beauty meson into a pair of muons and a pair of electrically charged kaons