The JUNO experiment measures neutrino oscillation parameters and mass ordering in reactor antineutrinos, indicating pivotal advancements in neutrino physics.
Key Points
The JUNO detector aims to determine neutrino mass ordering and measure oscillation parameters with high precision.
Equipped with over 43,200 photo multiplier tubes, it achieves energy resolution better than 3% at 1 MeV.
The installation was completed in December 2024, with ongoing commissioning and liquid scintillator filling.
JUNO's physics program includes studying solar, supernova, and atmospheric neutrinos, and may explore new physics beyond the Standard Model.