论文标题
伪凯尔介子的辐射松性衰减速率的首次晶格计算
First lattice calculation of radiative leptonic decay rates of pseudoscalar mesons
论文作者
论文摘要
我们提出了形式因子的非扰动晶格计算,这有助于辐射衰减的幅度$ p \ to \ ell \ bar v bν_\ ellγ$,其中$ p $是伪cudoscalar meson and $ \ ell $ $ \ ell $是收费的Lepton。连同对$ p \ to \ ell \ bar的更正的非扰动确定,由于交换了虚拟光子,这允许在$ O(α__{em})$上进行准确的预测,以使其用于伪造的衰减率,以使Pseudoscalar mesons reptonic衰减率从Pion the Pion to $ $ d_son上划分。我们能够在幅度中明确和非讲话上明确和非讲述点状的贡献与结构依赖的,红外的术语分开。完全非扰动的$ O(a)$改进了包含的松性衰减率的计算,将导致确定相应的cabibbo-kobayashi-maskawa(ckm)矩阵元素,也以$ o(α__{em})为$。精确评估缓慢衰减率和硬光子发射的前景也非常有趣,尤其是对于重$ d $ d $和$ b $ erson的衰减,目前只有与模型相关的预测可以与现有的实验数据进行比较。
We present a non-perturbative lattice calculation of the form factors which contribute to the amplitudes for the radiative decays $P\to \ell \bar ν_\ell γ$, where $P$ is a pseudoscalar meson and $\ell$ is a charged lepton. Together with the non-perturbative determination of the corrections to the processes $P\to \ell \bar ν_\ell$ due to the exchange of a virtual photon, this allows accurate predictions at $O(α_{em})$ to be made for leptonic decay rates for pseudoscalar mesons ranging from the pion to the $D_s$ meson. We are able to separate unambiguously and non-pertubatively the point-like contribution, from the structure-dependent, infrared-safe, terms in the amplitude. The fully non-perturbative $O(a)$ improved calculation of the inclusive leptonic decay rates will lead to the determination of the corresponding Cabibbo-Kobayashi-Maskawa (CKM) matrix elements also at $O(α_{em})$. Prospects for a precise evaluation of leptonic decay rates with emission of a hard photon are also very interesting, especially for the decays of heavy $D$ and $B$ mesons for which currently only model-dependent predictions are available to compare with existing experimental data.