论文标题

使用单电子光谱和角相关性探测$2νβ$的洛伦兹违规行为

Probing Lorentz violation in $2νββ$ using single electron spectra and angular correlations

论文作者

Nitescu, O. V., Ghinescu, S. A., Mirea, M., Stoica, S.

论文摘要

我们表明,可以通过研究单个电子光谱和发射电子之间的角相关性来扩展当前对$2νβ$衰变电子的能量光谱中对Lorentz不变性违规(LIV)的搜索。我们得出并计算了对这些光谱的LIV贡献,这些光谱与相机的操作员的各向异性部分相关,并通过系数$ \ MATHRING {a} _ {\ text {of}}}}^{(3)} $进行控制,并讨论实验中可能探索的可能签名。首先,我们表明在单电子光谱中发生了一些失真,在小电子能量下最大。然后,我们表明,通过分析角相关光谱以及标准模型扩展(SME)电子光谱与其标准模型(SM)形式之间的比率可以突出显示其他LIV效应。我们发现这些LIV签名取决于$ \ Mathring {a} _ {\ text {of}}}}^{(3)} $的大小,对于该系数的正值和负值而言,其表现不同,并且更明显,并且随着电子能量的方式而言,$ q $ q $ value。最后,我们提出了一种替代的新方法,以约束$ \ mathring {a} _ {\ text {of}}}}^{(3)} $,通过测量角相关系数。使用此方法,仅考虑统计不确定性,我们获得了$ \ MATHRING {a} _ {\ text {of}}}}^{(3)} $的界限,从当前的级别,从汇总能量光谱获得。我们表明,未来的实验可以显着改善这些限制。我们的研究是以$^{100} $ MO进行的,但是结果对于发生双β衰变的其他核质量成果。我们希望我们的结果将为DBD实验中进行的LIV分析提供更多动力。

We show that the current search for Lorentz invariance violation (LIV) in the summed energy spectra of electrons in $2νββ$ decay can be extended by investigating the single electron spectra and the angular correlation between the emitted electrons. We derive and calculate the LIV contributions to these spectra associated with the anisotropic part of the countershaded operator and controlled through the coefficient $\mathring{a}_{\text{of}}^{(3)}$ and discuss possible signatures that may be probed in experiments. First, we show that some distortion occurs in the single electron spectrum, maximal at small electron energies. Then, we show that other LIV effects may be highlighted by analysing the angular correlation spectra and the ratio between the Standard Model Extension (SME) electron spectra and their Standard Model (SM) forms. We found that these LIV signatures depend on the magnitude of $\mathring{a}_{\text{of}}^{(3)}$, manifest differently for positive and negative values of this coefficient, and become more pronounced as the electron energy approaches the $Q$-value. Finally, we propose an alternative, new method to constrain $\mathring{a}_{\text{of}}^{(3)}$ through the measurement of the angular correlation coefficient. Using this method, and considering only statistical uncertainties, we obtain bounds of $\mathring{a}_{\text{of}}^{(3)}$ at the level of present ones, obtained from summed energy spectra. We show that future experiments can improve these limits significantly. Our study is performed for $^{100}$Mo, but the results hold qualitatively for other nuclei that undergo a double-beta decay. We hope our results will provide additional motivation for the LIV analyses performed in DBD experiments.

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