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Chiral two-body currents and neutrinoless double-β decay in the quasiparticle random-phase approximation

机译:准粒子随机相位近似中的手性两体电流和无中微子双β衰变

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摘要

We test the effects of an approximate treatment of two-body contributions to the axial-vector current on the quasiparticle random-phase approximation (QRPA) matrix elements for neutrinoless double-beta decay in a range of isotopes. The form and strength of the two-body terms come from chiral effective-field theory. The two-body currents typically reduce the matrix elements by about 20%, not as much as in shell-model calculations. One reason for the difference is that standard practice in the QRPA is to adjust the strength of the isoscalar pairing interaction to reproduce two-neutrino double-beta decay lifetimes. Another may be the larger QRPA single-particle space. Whatever the reasons, the effects on neutrinoless decay are significantly less than those on two-neutrino decay, both in the shell model and the QRPA.
机译:我们测试了两体对轴向矢量电流贡献的近似处理对在一系列同位素中无中微子双β衰变的准粒子随机相位近似(QRPA)矩阵元素的影响。两体项的形式和强度来自手性有效场理论。两体电流通常使矩阵元素减少约20%,不如在壳模型计算中那样大。造成这种差异的原因之一是QRPA中的标准做法是调整等量配对相互作用的强度,以重现两个中微子双β衰变寿命。另一个可能是较大的QRPA单粒子空间。无论是什么原因,无论是在壳模型还是在QRPA中,对无中微子衰变的影响都明显小于对中微子衰变的影响。

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