论文标题
Koto的新光粒子的烙印?
Imprint of a new light particle at KOTO?
论文作者
论文摘要
最近,Koto实验报告了他们搜索衰减$ k_l \toπ^0ν\barν$的新初步结果。在信号区域观察到三个候选事件,这些事件基于标准模型显着超过了期望。另一方面,新的NA62和先前的BNL-E949实验得出了一致的结果,并确认了带电的中型衰变$ k^+\toπ^+v bar的标准模型预测。此外,这两个衰减受到齐本蛋白对称性分析的良好动机关系,这很难被重颗粒的新物理学打破。在这项工作中,我们通过具有系统的有效现场理论方法研究了问题,其中三种最简单的情况可能会损失新的轻中性粒子$ x $,即$ k_l \toπ^0x $,$ k_l \ toγγx$,或$ k_l \ to $ k_l \toπ^0xx $。我们通过仿真和合并来自NA62和其他相关实验的约束来评估场景的可行性。我们的主要结论是,在组合分布和其他实验约束时,长期活着的标量$ x $的方案$ k \toπxx$似乎比其他两个方案更可信,而Koto盲盒下方的区域则提供了一个很好的检测环境,可以搜索所有三个方案,以寻找相对较重的$ x $。
Recently, the KOTO experiment reported their new preliminary result of searching for the decay $K_L\toπ^0ν\barν$. Three candidate events were observed in the signal region, which exceed significantly the expectation based on the standard model. On the other hand, the new NA62 and previous BNL-E949 experiments yielded a consistent result and confirmed the standard model prediction in the charged meson decay $K^+\toπ^+ν\barν$. Furthermore, the two decays are bound by a well-motivated relation from an analysis of isospin symmetry that is hard to break by the new physics of heavy particles. In this work, we study the issue by a systematic effective field theory approach with three of the simplest scenarios, in which the $K_L$ may decay into a new light neutral particle $X$, i.e., $K_L\toπ^0X$, $K_L\to γγX$, or $K_L\toπ^0XX$. We assess the feasibility of the scenarios by simulations and by incorporating constraints coming from NA62 and other relevant experiments. Our main conclusion is that the scenario $K\toπXX$ for a long lived scalar $X$ seems more credible than the other two when combining distributions and other experimental constraints while the region below the KOTO's blind box provides a good detection environment to search for all three scenarios for a relatively heavy $X$.