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Inverse beta decay, commonly abbreviated to IBD, is a nuclear reaction involving an electron antineutrino scattering off a proton, creating a positron and a neutron. This process is commonly used in the detection of electron antineutrinos in neutrino detectors, such as the first detection of antineutrinos in the Cowan–Reines neutrino experiment, or in neutrino experiments such as KamLAND and Borexino. It is an essential process to experiments involving low-energy neutrinos (< 60 MeV) such as those studying neutrino oscillation, reactor neutrinos, sterile neutrinos, and geoneutrinos. The IBD reaction can only be used to detect antineutrinos (rather than normal matter neutrinos, such as from the Sun) due to lepton conservation.

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  • Inverzní beta rozpad (cs)
  • Inverse beta decay (en)
  • 逆ベータ崩壊 (ja)
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  • Inverzní beta rozpad, běžně označovaný zkratkou IBD, je jaderná reakce zahrnující rozptyl elektronového antineutrina a protonu, za vytvoření pozitronu a neutronu. Tento proces se běžně používá v detekci elektronových antineutrin v neutrinových detektorech, jako byla první detekce antineutrin v Cowanově–Reinesově neutrinovém experimentu, nebo v neutrinových experimentech jako či . Je to základní proces při pokusech zahrnujících nízkoenergetická neutrina (< 60 MeV), například při studiu , reaktorových neutrin, a (cs)
  • Inverse beta decay, commonly abbreviated to IBD, is a nuclear reaction involving an electron antineutrino scattering off a proton, creating a positron and a neutron. This process is commonly used in the detection of electron antineutrinos in neutrino detectors, such as the first detection of antineutrinos in the Cowan–Reines neutrino experiment, or in neutrino experiments such as KamLAND and Borexino. It is an essential process to experiments involving low-energy neutrinos (< 60 MeV) such as those studying neutrino oscillation, reactor neutrinos, sterile neutrinos, and geoneutrinos. The IBD reaction can only be used to detect antineutrinos (rather than normal matter neutrinos, such as from the Sun) due to lepton conservation. (en)
  • 逆ベータ崩壊(英: Inverse beta decay、一般的にIBDと略される)は反電子ニュートリノが陽子に散乱され、陽電子と中性子を生み出す原子核反応である。この過程はニュートリノ検出器で反電子ニュートリノの検出のためによく使われる。例えば、クライド・カワンとフレデリック・ライネスが初めて反ニュートリノを検出した実験、そしてカムランドやBorexinoのようなニュートリノ実験はこの過程を利用している。この過程はニュートリノ振動、原子炉ニュートリノ、ステライルニュートリノ、そしてなど低エネルギーのニュートリノ(< 60 MeV)に関する実験に不可欠である。 (ja)
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  • Inverzní beta rozpad, běžně označovaný zkratkou IBD, je jaderná reakce zahrnující rozptyl elektronového antineutrina a protonu, za vytvoření pozitronu a neutronu. Tento proces se běžně používá v detekci elektronových antineutrin v neutrinových detektorech, jako byla první detekce antineutrin v Cowanově–Reinesově neutrinovém experimentu, nebo v neutrinových experimentech jako či . Je to základní proces při pokusech zahrnujících nízkoenergetická neutrina (< 60 MeV), například při studiu , reaktorových neutrin, a (cs)
  • Inverse beta decay, commonly abbreviated to IBD, is a nuclear reaction involving an electron antineutrino scattering off a proton, creating a positron and a neutron. This process is commonly used in the detection of electron antineutrinos in neutrino detectors, such as the first detection of antineutrinos in the Cowan–Reines neutrino experiment, or in neutrino experiments such as KamLAND and Borexino. It is an essential process to experiments involving low-energy neutrinos (< 60 MeV) such as those studying neutrino oscillation, reactor neutrinos, sterile neutrinos, and geoneutrinos. The IBD reaction can only be used to detect antineutrinos (rather than normal matter neutrinos, such as from the Sun) due to lepton conservation. (en)
  • 逆ベータ崩壊(英: Inverse beta decay、一般的にIBDと略される)は反電子ニュートリノが陽子に散乱され、陽電子と中性子を生み出す原子核反応である。この過程はニュートリノ検出器で反電子ニュートリノの検出のためによく使われる。例えば、クライド・カワンとフレデリック・ライネスが初めて反ニュートリノを検出した実験、そしてカムランドやBorexinoのようなニュートリノ実験はこの過程を利用している。この過程はニュートリノ振動、原子炉ニュートリノ、ステライルニュートリノ、そしてなど低エネルギーのニュートリノ(< 60 MeV)に関する実験に不可欠である。 (ja)
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