论文标题
通过LHC搜索发现手性抑制的机制$0νβ$衰减
Uncovering a chirally suppressed mechanism of $0νββ$ decay with LHC searches
论文作者
论文摘要
$Δl= 2 $ Lepton数字违规(LNV)在TEV量表上可以提供对未来中微子双β$(0νββ)$衰减实验的正信号的替代解释。从这个角度来看,一个有趣的模型是那些在低能处产生尺寸-9矢量运算符和dimension-7运算符的模型,其两者均$0νβ.$ - 订单速率都被“抑制了”。我们研究并比较了$0νβ$ -DECAY实验的灵敏度和LHC搜索与此类TEV级LNV中的简化模型,该模型也是$ su(2)_l \ times u(times u(times u(times u(1)_y $ g仪表,发现$0νβ$衰减的搜索在这里通过手性抑制向量算子稀释,比介导器颗粒的假定运动学可及性增加的LHC搜索的限制较小。相比之下,对于由TEV尺度介体产生的Dimension-7运算符,$0νβ$ - decay搜索对新Yukawa耦合的大小施加了强大的约束。该模型在LHC上的信号和$0νβ$ -decay实验与观察到的中微子质量完全不相关,因为这些新的LNV来源对后者的贡献可忽略不计。我们发现高亮度LHC和吨级$0νβ$ -DECAY实验的前景可以通过TEV尺度LNV揭示精神抑制的机制,这是有希望的。我们还评论了$0νβ$ -Decay寿命对某些未知低能的常数的敏感性,即在尺寸9 {\ it标量}的情况下,由于非扰动性重态化,预计操作员有望大大。
$ΔL =2$ lepton number violation (LNV) at the TeV scale could provide an alternative interpretation of positive signal(s) in future neutrinoless double beta $(0νββ)$ decay experiments. An interesting class of models from this point of view are those that at low energies give rise to dimension-9 vector operators and a dimension-7 operator, both of whose $0νββ$-decay rates are "chirally suppressed". We study and compare the sensitivities of $0νββ$-decay experiments and LHC searches to a simplified model in this class of TeV-scale LNV that is also $SU(2)_L \times U(1)_Y$ gauge invariant. The searches for $0νββ$ decay, which are here diluted by a chiral suppression of the vector operators, are found to be less constraining than LHC searches whose reach is increased by the assumed kinematic accessibility of the mediator particles. For the chirally suppressed dimension-7 operator generated by TeV-scale mediators, in contrast, $0νββ$-decay searches place strong constraints on the size of the new Yukawa coupling. Signals of this model at the LHC and $0νββ$-decay experiments are entirely uncorrelated with the observed neutrinos masses, as these new sources of LNV give negligible contributions to the latter. We find the prospects for the high-luminosity LHC and ton-scale $0νββ$-decay experiments to uncover the chirally-suppressed mechanism with TeV-scale LNV to be promising. We also comment on the sensitivity of the $0νββ$-decay lifetime to certain unknown low-energy constants that in the case of dimension-9 {\it scalar} operators are expected to be large due to non-perturbative renormalization.