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Showing 1 to 5 of 5 for “"Reactor Antineutrinos"”.

  1. Observation of Reactor Antineutrinos with the CHANDLER Detector

    … we search for short baseline oscillations using antineutrinos from nuclear reactors. We have developed a reactor antineutrino detection technology based on solid plastic scintillator, called CHANDLER, which could be used to search for short baseline reactor antineutrino oscillations. An 80 kg …

    vt Repository record for Observation of Reactor Antineutrinos with the CHANDLER Detector (opens in a new tab)

  2. Reactor Antineutrinos In The Sno+ Water Phase And Detector R&d For Large-Scale Neutrino Detectors

    … SNO+ experiment. First, I describe a search for reactor antineutrino interactions in the SNO+ water-filled detector using a 190.3 day dataset. Reactor neutrinos have never before been detected in a water Cherenkov detector, primarily due to the difficulty in detecting the low energy signal from …

    penn Repository record for Reactor Antineutrinos In The Sno+ Water Phase And Detector R&d For Large-Scale Neutrino Detectors (opens in a new tab)

  3. Testing of GdCl3 Doping in Water Cherenkov Antineutrino Detectors

    … first use of gadolinium loaded water to detect reactor antineutrinos.

    lsu-thes Repository record for Testing of GdCl3 Doping in Water Cherenkov Antineutrino Detectors (opens in a new tab)

  4. The Daya Bay Reactor Neutrino Experiment

    The Daya Bay reactor neutrino experiment is a high sensitivity experiment designed to determine the last unknown neutrino mixing angle $theta_{13}$ by measuring disappearance of reactor antineutrinos emitted from six 2.9 $GW_{th}$ reactors at the Daya Bay Nuclear Power Station. There are eight …

    vt Repository record for The Daya Bay Reactor Neutrino Experiment (opens in a new tab)

  5. Neutron Measurements and Reactor Antineutrino Search with the SNO+ Detector in the Water Phase

    … \bar{\nu}/(\textrm{cm}^2\cdot\textrm{s})$, on the reactor antineutrino flux for SNO+ is obtained using a maximum likelihood approach. The limit is about a factor of 9 higher than the expected signal in SNO+, which can be calculated using available reactor output power data.

    queens Repository record for Neutron Measurements and Reactor Antineutrino Search with the SNO+ Detector in the Water Phase (opens in a new tab)