论文标题
第五力解释的动力学证据
Dynamical Evidence For a Fifth Force Explanation of the ATOMKI Nuclear Anomalies
论文作者
论文摘要
$^8 $ be和$^4 $ he核衰减的近期异常可以通过假设由新的Boson $ x $介导的第五部队来解释。两种过渡的分布都与相同的$ x $质量(17 MeV)一致,为单个新粒子解释提供运动学证据。在这项工作中,我们检查了新结果是否还为新的粒子解释提供了动态证据,也就是说,是否可以通过单个假设来描述这两种异常的衰减速率。我们认为观察到的$^8 $ be和$^4 $他激发了核,以及$^{12} $ c激发核;这些共同将可能的$ j^p $量子数达到旋转1。对于每个过渡,我们确定标量,伪尺度,矢量或轴向向量$ x $粒子是否可以介导衰减,并且我们在核物理学有效的领域理论中构建了领先的操作员,以描述它们。假设奇偶校验保护,标量案例被排除在外,并且伪内案例被高度不利。然而,值得注意的是,最初建议仅解释$^8 $是异常的原始载体量表玻色子,也解释了实验性不确定性中的$^4 $ HE异常。我们预测其他密切相关的核测量值的信号速率,如果确认,将提供压倒性的证据,证明已经发现了第五力。
Recent anomalies in $^8$Be and $^4$He nuclear decays can be explained by postulating a fifth force mediated by a new boson $X$. The distributions of both transitions are consistent with the same $X$ mass, 17 MeV, providing kinematic evidence for a single new particle explanation. In this work, we examine whether the new results also provide dynamical evidence for a new particle explanation, that is, whether the observed decay rates of both anomalies can be described by a single hypothesis for the $X$ boson's interactions. We consider the observed $^8$Be and $^4$He excited nuclei, as well as a $^{12}$C excited nucleus; together these span the possible $J^P$ quantum numbers up to spin 1. For each transition, we determine whether scalar, pseudoscalar, vector, or axial vector $X$ particles can mediate the decay, and we construct the leading operators in a nuclear physics effective field theory that describes them. Assuming parity conservation, the scalar case is excluded and the pseudoscalar case is highly disfavored. Remarkably, however, the protophobic vector gauge boson, first proposed to explain only the $^8$Be anomaly, also explains the $^4$He anomaly within experimental uncertainties. We predict signal rates for other closely related nuclear measurements, which, if confirmed, will provide overwhelming evidence that a fifth force has been discovered.