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physics.ins-det2026

Final assessment of radioactive impurities in the JUNO detector

Thomas Adam, Fengpeng An, Costas Andreopoulos +569

The Jiangmen Underground Neutrino Observatory (JUNO) collaboration has completed the construction of the 20,000-ton liquid scintillator detector and the associated muon veto detect…

physics.ins-det2026

Test of the JUNO 20-inch PMTs during Installation

Haojie Dong, Zhaoyuan Peng, Zhonghua Qin +13

Photomultiplier tubes (PMTs) are widely used in neutrino experiments. As a new-generation neutrino observatory, JUNO requires an excellent energy resolution of 3% at 1 MeV. This wi…

physics.ins-det2026

Embedded underwater front-end electronics for the 3-inch photomultipliers in the JUNO experiment

Cédric Cerna, Miao He, Xiaoshan Jiang +591

The Jiangmen Underground Neutrino Observatory (JUNO) is a 20-kton liquid scintillator-based, low-radioactivity, multi-purpose neutrino detector located 693 meters (1800 m.w.e.) und…

physics.ins-det2025

Simulation of the Background from CO Reaction in the JUNO Scintillator

JUNO Collaboration, Thomas Adam, Kai Adamowicz +627

Large-scale organic liquid scintillator detectors are highly efficient in the detection of MeV-scale electron antineutrinos. These signal events can be detected through inverse bet…

physics.ins-det2025

A Test System for the JUNO 20-inch PMTs Prior to Installation

Zhaoyuan Peng, Haojie Dong, Kaile Wen +11

The JUNO experiment requires an excellent energy resolution of 3\% at 1 MeV. To achieve this objective, a total of 20,012 20-inch photomultiplier tubes (PMTs) will be deployed for…