论文标题
$λ$机制的核矩阵元素$0νββ$的$^{48} $ ca在核壳模型中:封闭方法与违禁方法
Nuclear matrix elements for $λ$ mechanism of $0νββ$ of $^{48}$Ca in nuclear shell-model: Closure versus nonclosure approach
论文作者
论文摘要
$λ$和$ m_ {ββ} $中微子双β衰减的机制($0νββ$)分别通过$ W_L-W_R $和$ W_L-W_L $中微子进行。在本研究中,我们计算了$ M_ {ββ} $和$λ$机制的核矩阵元素(NME)的$0νββ$,该机理起源于左右对称模型,该模型具有右手的指标玻色子。 NME是针对$0νβ$衰减同位素之一$^{48} $ Ca之一计算的,使用$ PF $ -shell的有效相互作用,在相互作用的核壳模型中计算了NME。 NME使用四种不同的方法在闭合和否定方法中都计算出来:闭合,闭合闭合,跑步违禁和混合方法。计算所有NME,其中包含核子有限大小的影响以及重新审视的高阶项,例如等级和核子电流的弱磁性项。还要照顾Miller-Spencer,Cd-Bonn和AV18参数化的核子核子相互作用的短距离性质。跑步闭合和违禁NME的比较依赖性具有中间核$^{48} $ sc的自旋态度,两个初始衰减中子的耦合自旋 - 比度和最后两个质子的耦合自旋 - 偏向性,$^{48} $ sc的临界值,$ sc $ sc的临界值,$ sc cutoff cutoff cutoff cutoff of cutoff of $ sc。结果表明,与封闭方法相比,在不同类型的总NME中大约有2-20 \%的增强功能,在非限制方法中计算出来。在$ m_ {qgt} $和$ m_ {qt} $ type nmes中找到了显着的增强功能,以包含核子电流的高阶项。
The $λ$ and $m_{ββ}$ mechanisms of neutrinoless double beta decay ($0νββ$) occur with light neutrino exchange via $W_L-W_R$, and $W_L-W_L$ mediation, respectively. In the present study, we calculate the nuclear matrix elements (NMEs) for the $m_{ββ}$ and $λ$ mechanisms of $0νββ$, which has origin in the left-right symmetric model with right-handed gauge boson at TeV scale. The NMEs are calculated for one of the $0νββ$ decaying isotope $^{48}$Ca in the interacting nuclear shell-model using the GXPF1A effective interaction of $pf$-shell. The NMEs are calculated in both closure and nonclosure approaches using four different methods: closure, running closure, running nonclosure, and mixed methods. All the NMEs are calculated incorporating the effects of the finite size of nucleons and the revisited higher order terms such as isoscalar and weak magnetism terms of the nucleon currents. Inclusion of the short-range nature of nucleon-nucleon interaction in Miller-Spencer, CD-Bonn, and AV18 parametrizations is also taken care of. The comparative dependence of the running closure and running nonclosure NMEs with the spin-parity of the allowed states of intermediate nucleus $^{48}$Sc, the coupled spin-parity of the two initial decaying neutrons and the final two protons, the cutoff excitation energy of $^{48}$Sc, the cutoff number of states of $^{48}$Sc are also examined. Results show that there are about 2-20\% enhancements in different types of total NMEs, calculated in the nonclosure approach as compared to the closure approach. The significant enhancements are found in the $M_{qGT}$ and $M_{qT}$ type NMEs for the inclusion of the higher-order terms of the nucleon currents.