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  2. Neutron detection - Wikipedia

    en.wikipedia.org/wiki/Neutron_detection

    Neutron detection is the effective detection of neutrons entering a well-positioned detector. There are two key aspects to effective neutron detection: hardware and software. Detection hardware refers to the kind of neutron detector used (the most common today is the scintillation detector) and to the

  3. Geometric and material buckling - Wikipedia

    en.wikipedia.org/wiki/Geometric_and_Material...

    Geometric buckling is a measure of neutron leakage and material buckling is a measure of the difference between neutron production and neutron absorption. [1] When nuclear fission occurs inside of a nuclear reactor, neutrons are produced. [1] These neutrons then, to state it simply, either react with the fuel in the reactor or escape from the ...

  4. Kamioka Liquid Scintillator Antineutrino Detector - Wikipedia

    en.wikipedia.org/wiki/Kamioka_Liquid_Scintillat...

    The Kamioka Liquid Scintillator Antineutrino Detector (KamLAND) is an electron antineutrino detector at the Kamioka Observatory, an underground neutrino detection facility in Hida, Gifu, The device is situated in a drift mine shaft in the old KamiokaNDE cavity in the Japanese Alps .

  5. Neutrino detector - Wikipedia

    en.wikipedia.org/wiki/Neutrino_detector

    A detector which can distinguish among these leptons can reveal the flavor of the neutrino incident to a charged current interaction; because the interaction involves the exchange of a W boson, the 'target' particle also changes (e.g., neutron → proton).

  6. Large-Area Neutron Detector - Wikipedia

    en.wikipedia.org/wiki/Large-area_neutron_detector

    The detector is built of 10 planes with 20 paddles each. The paddles have a size of 10x10x200cm and are composed of a converter (iron) and plastic scintillator material. Within the paddle the 5 mm thick converters serve as a dense target for neutrons leading to processes that eject charged particles through the process of hadronic showers .

  7. Self Powered Neutron Detector - Wikipedia

    en.wikipedia.org/wiki/Self_Powered_Neutron_Detector

    Self Powered Neutron Detector (SPND) is a neutron detector used in nuclear fission reactors. It is a compact device extensively used worldwide for mapping of neutron flux , helping the reactor-operators in maintaining the neutron economy .