Tag: neutrinos
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Neutrinos Make Their Mark in the North Hall
Neutrinos Make Their Mark in the North Hall One of the conclusions from the ESPPU 2013 process was that CERN should actively engage in the global accelerator-based neutrino program. As a result, CERN became involved in various initiatives, including the DUNE project, and took a leading role in constructing two large 750-ton Liquid Argon TPC
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SND@LHC gears up for data taking
SND@LHC gears up for data taking The last fifteen months have been a full-fledged race against the clock for the SND@LHC Collaboration. The experiment was approved by the Research Board in March 2021 with the goal of taking data in Run 3 of the LHC. The Collaboration has had to construct and test the sub-detectors
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Designing the SND@LHC experiment
Designing the SND@LHC experiment SND@LHC is a newly proposed, compact and stand-alone experiment to perform measurements with neutrinos produced at the LHC in a hitherto unexplored pseudo-rapidity range of 7.2 < ๐ < 8.6, complementary to all the other experiments at the LHC, including FASER. Today, two effects make it possible and particularly interesting to
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ProtoDUNE sees first particle tracks
ProtoDUNE sees first particle tracks Introduction The CERN Neutrino Platform was installed in 2014 following the recommendation of the European Strategy Group for CERN to engage in the worldwide experimental neutrino program. The platform engaged from the start in the future Deep Underground Neutrino Experiment (DUNE) in the US, which plans for its far detector
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Bring on the DUNE detectors
Bring on the DUNE detectors DUNE (Deep Underground Neutrino Experiment) is an international experiment pushing the frontiers of neutrino science and proton decay in the next two decades. The experiment will use the world's most intense neutrino beam from Fermilabโs Long-Baseline Neutrino Facility, a Near Detector to characterise the initial beam and study neutrino interactions
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Neutrino properties from cosmology
Neutrino properties from cosmology Cosmology has entered the precision era: we now have a standard model for cosmology where the content, history and evolution of the Universe are described by few parameters. These parameters are constrained by observations at the percent level or better. As for particle physics and the search for beyond the standard