双β衰变轴矢量弱耦合的核核和介子核核反应实验研究

H. Ejiri
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引用次数: 1

摘要

我们简要地报道了最近在宽能量(0-50 MeV)和动量(0-100 MeV/c)区域的中微子核响应(核矩阵元素NMEs的平方)的轴向量弱耦合的实验研究,这与无中微子双β衰变(DBDs)和超新星中微子有关。(3He,t)电荷交换反应(CERs)的高能量分辨率研究用于研究τ−侧NMEs,而电荷交换μ子反应(普通μ子捕获反应OMC)用于研究τ+侧NMEs。由单β/EC NMEs和CER NMEs推导的实验NMEs表明,相对于A pnQRPA NMEs, (J±≤4)自旋同位旋(轴矢量)NMEs均匀地减小了系数gAeff/gAfree≈0.5−0.6。那么DBD NMEs的M0ν可能会相对于pnQRPA NMEs减少0.5左右的系数,这取决于轴向矢量NMEs与矢量NMEs的比值。我们简要地报道了最近在宽能量(0-50 MeV)和动量(0-100 MeV/c)区域的中微子核响应(核矩阵元素NMEs的平方)的轴向量弱耦合的实验研究,这与无中微子双β衰变(DBDs)和超新星中微子有关。(3He,t)电荷交换反应(CERs)的高能量分辨率研究用于研究τ−侧NMEs,而电荷交换μ子反应(普通μ子捕获反应OMC)用于研究τ+侧NMEs。由单β/EC NMEs和CER NMEs推导的实验NMEs表明,相对于A pnQRPA NMEs, (J±≤4)自旋同位旋(轴矢量)NMEs均匀地减小了系数gAeff/gAfree≈0.5−0.6。那么DBD NMEs的M0ν可能会相对于pnQRPA NMEs减少0.5左右的系数,这取决于轴向矢量NMEs与矢量NMEs的比值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental studies of axial-vector weak couplings for double beta decays by nuclear and muon CERs
We report briefly recent experimental studies of axial-vector weak couplings for neutrino nuclear responses (squares of nuclear matrix elements NMEs) in the wide energy (0-50 MeV) and momentum (0-100 MeV/c) regions, which are relevant to neutrinoless double beta decays (DBDs) and supernova neutrinos. High energy-resolution studies of charge exchange reactions (CERs) of (3He,t) are used for studying the τ− side NMEs, while charge exchange muon reactions (ordinary muon capture reactions OMC) are for studying the τ+ side NMEs. The experimental NMEs derived from the single β/EC NMEs and the CER NMEs show that the (J± ≤4) spin isospin (axial vector) NMEs are uniformly reduced by the coefficient gAeff/gAfree≈0.5−0.6 with respect to A pnQRPA NMEs. Then the DBD NMEs M0ν may be reduced by the coefficient around 0.5, depending on the ratio of the axial-vector to vector NMEs, with respect to the pnQRPA NMEs.We report briefly recent experimental studies of axial-vector weak couplings for neutrino nuclear responses (squares of nuclear matrix elements NMEs) in the wide energy (0-50 MeV) and momentum (0-100 MeV/c) regions, which are relevant to neutrinoless double beta decays (DBDs) and supernova neutrinos. High energy-resolution studies of charge exchange reactions (CERs) of (3He,t) are used for studying the τ− side NMEs, while charge exchange muon reactions (ordinary muon capture reactions OMC) are for studying the τ+ side NMEs. The experimental NMEs derived from the single β/EC NMEs and the CER NMEs show that the (J± ≤4) spin isospin (axial vector) NMEs are uniformly reduced by the coefficient gAeff/gAfree≈0.5−0.6 with respect to A pnQRPA NMEs. Then the DBD NMEs M0ν may be reduced by the coefficient around 0.5, depending on the ratio of the axial-vector to vector NMEs, with respect to the pnQRPA NMEs.
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