论文标题

在结合系统中的第五力和超细分裂

Fifth Force and Hyperfine Splitting in Bound Systems

论文作者

Jentschura, Ulrich D.

论文摘要

匈牙利科学学院阿托姆基研究所的两个最新实验观察(关于来自8BE和4HE的核转变的电子 - 峰值对的角发射模式)表明可能存在大约17 MeV的休息质量能量的粒子。所谓的X17粒子在该过程中构成虚拟状态,在电子峰值对发射之前。基于核过渡的对称性($ 1^+$至$ 0^+$,$ 0^ - $至$ 0^+$),X17可以是矢量,也可以是伪斯卡拉粒子。在这里,我们计算了X17产生的有效电位,用于简单原子系统中的超精细相互作用,用于伪cal和Vector X17假设。有效的汉密尔顿人以通用形式获得,该形式适用于电子和Muonic结合系统。还考虑了虚拟歼灭的影响及其对超细分裂的贡献。由于X17生成的电位的范围很短,因此在结合系统中观察X17介导的效果的最有希望的途径涉及Hyperfine相互作用,对于$ S $的状态而言,这是通过在坐标空间中的短距离(Dirac-Delta)的修改给出的。对于伪级假设,在结合的Lepton和Nucleus之间交换一个虚拟X17量子,仅会导致超细效应,但不会影响羔羊的移位。 X17引起的效果已显示出对Muonic结合系统的巨大增强。分析了通过X17交换介导的超精细效应的前景,分析了Muonic氘,Muonic氢,Muonium,True Muonium($μ^+μ^ - $边界系统)和potronium。

Two recent experimental observations at the ATOMKI Institute of the Hungarian Academy of Sciences (regarding the angular emission pattern of electron-positron pairs from nuclear transitions from excited states in 8Be and 4He) indicate the possible existence of a particle of a rest mass energy of roughly 17 MeV. The so-called X17 particle constitutes a virtual state in the process, preceding the emission of the electron-positron pair. Based on the symmetry of the nuclear transitions ($1^+$ to $0^+$ and $0^-$ to $0^+$), the X17 could either be a vector, or a pseudoscalar particle. Here, we calculate the effective potentials generated by the X17, for hyperfine interactions in simple atomic systems, for both the pseudoscalar as well as the vector X17 hypotheses. The effective Hamiltonians are obtained in a general form which is applicable to both electronic as well as muonic bound systems. The effect of virtual annihilation and its contribution to the hyperfine splitting also is considered. Because of the short range of the X17-generated potentials, the most promising pathway for the observation of the X17-mediated effects in bound systems concerns hyperfine interactions, which, for $S$ states, are given by modifications of short-range (Dirac-delta) potentials in coordinate space. For the pseudoscalar hypothesis, the exchange of one virtual X17 quantum between the bound lepton and the nucleus exclusively leads to hyperfine effects, but does not affect the Lamb shift. Effects due to the X17 are shown to be drastically enhanced for muonic bound systems. Prospects for the detection of hyperfine effects mediated by X17 exchange are analyzed for muonic deuterium, muonic hydrogen, muonium, true muonium ($μ^+μ^-$ bound system), and positronium.

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