论文标题
晶格QCD+QED预测光介子的辐射松性衰变与实验数据的比较
Comparison of lattice QCD+QED predictions for radiative leptonic decays of light mesons with experimental data
论文作者
论文摘要
我们介绍了辐射性松性衰变的现有实验数据的比较,$ p \ to \ellν_\ellγ$,其中$ p = k $或$π$和$ \ ell = e $或$ $ $ $或$ $ $,来自Kloe,pibeta,pibeta,e787,e787,ISTRA+和OKA的确定,并确定了构建的构建,并确定了构建的构建,并确定了理论的构建,以证明了理论的构建,以证明了理论的构建。轴向矢量的形式要素,分别为$ f_v $和$ f_a $。这些是在电磁耦合中使用$ o(α_ {\ mathrm {em}}} $的晶格QCD+QED模拟获得的。我们发现与$ k \ toeν_eγ$衰减的Kloe数据达成了很好的一致性,从中可以确定formational $ f^+= f_v+f_a $。对于$ k \toμν_μγ$衰变,我们观察到理论预测与E787,ISTRA+和OKA实验的数据和数据之间的大量光子能量的4个标准偏差,以及在某些具有pibeta pibeta the Pibeta on radiative Pion pion pion perion decays decays decays decays decays decays decays decays decays decays decays decays decays decess的e787,istra+和oka实验的数据。对标准模型中所有KAON-纽扣数据的全球研究导致拟合度较差,这主要是因为在大光子能量下,Kloe和E787数据不能同时以相同的外形$ f^+$来同时再现。形式因子$ f^ - = f_v-f_a $的理论和实验值之间的差异更加明显。这些观察结果激发了对结构依赖形式的理论和实验确定的未来改进,$ f^+$和$ f^ - $,以及对“新物理学”模型的进一步理论研究,例如,可能包括$ v- $ v- $ a和/或非近空校正以超越$ v的风味相互作用,以使lepton coupling couplings couplings couplings。
We present a comparison of existing experimental data for the radiative leptonic decays $P\to\ellν_\ellγ$, where $P=K$ or $π$ and $\ell=e$ or $μ$, from the KLOE, PIBETA, E787, ISTRA+ and OKA collaborations with theoretical predictions based on the recent non-perturbative determinations of the structure-dependent vector and axial-vector form factors, $F_V$ and $F_A$ respectively. These were obtained using lattice QCD+QED simulations at order $O(α_{\mathrm{em}})$ in the electromagnetic coupling. We find good agreement with the KLOE data on $K\to eν_eγ$ decays from which the form factor $F^+=F_V+F_A$ can be determined. For $K\toμν_μγ$ decays we observe differences of up to 3\,-\,4 standard deviations at large photon energies between the theoretical predictions and the data from the E787, ISTRA+ and OKA experiments and similar discrepancies in some kinematical regions with the PIBETA experiment on radiative pion decays. A global study of all the kaon-decay data within the Standard Model results in a poor fit, largely because at large photon energies the KLOE and E787 data cannot be reproduced simultaneously in terms of the same form factor $F^+$. The discrepancy between the theoretical and experimental values of the form factor $F^-=F_V-F_A$ is even more pronounced. These observations motivate future improvements of both the theoretical and experimental determinations of the structure-dependent form factors $F^+$ and $F^-$, as well as further theoretical investigations of models of "new physics" which might for example, include possible flavor changing interactions beyond $V - A$ and/or non-universal corrections to the lepton couplings.