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  1. JUNO measures the reactor antineutrino using the inverse-beta-decay (IBD) reaction channel on free proton (∼ 99%) or carbon (∼ 1%). The energy characteristics, time correlation, and spatial...

  2. A Brief Introduction to JUNO. The Design of the JUNO Detector System. Current status of JUNO. Summary. Known θ13 Enables Neutrino Mass Hierarchy at Reactors. How to resolve neutrino mass hierarchy using reactor neutrinos – KamLAND (long-baseline) measures the solar sector parameters.

  3. The Jiangmen Underground Neutrino Observatory (JUNO) is a medium baseline [2][3] reactor neutrino experiment under construction at Kaiping, Jiangmen in Guangdong province in Southern China. It aims to determine the neutrino mass hierarchy and perform precision measurements of the Pontecorvo–Maki–Nakagawa–Sakata matrix elements.

  4. Jiangmen Underground Neutrino Observatory (JUNO), as a medium baseline reactor antineutrino experiment, can determine the neutrino mass hierarchy independent of the CP phase. The physics potential on the mass hierarchy, and other measurements p are reviewed.

  5. The simulation is set up with two detectors: a JUNO-like far detector with a fiducial mass of 20 kt and an energy resolution of 3%/ √ E at a distance of 53 km from a nuclear reactor source with...

  6. Nov 1, 2022 · The Jiangmen Underground Neutrino observatory (JUNO) experiment uses a large liquid scintillator detector to detect electron antineutrinos issued from nuclear reactors at a distance of 53 km. Its main goal is to determine the neutrino mass hierarchy and precisely measure some of the oscillation parameters. The detector will be located 700 m ...

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  8. We calculate the prospects for identifying such events in the Jiangmen Underground Neutrino Observatory (JUNO), a large-scale liquid-scintillator detector.

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