论文标题
$πη$散射中的手性nonet混合
Chiral Nonet Mixing in $πη$ Scattering
论文作者
论文摘要
在$πη$ Channel上使用标量(和Psedudosclar)介子的两种和四夸克组件之间混合的通用线性sigma模型,用于$πη$通道,其中ISOVECTOR标量$ A_0(980)$和$ A_0(1450)$进行了探测。在领先顺序中,模型参数先前已由各种低能实验数据固定,然后应用于$π$和$πk$通道,其中光和广泛的$σ$和$κ$梅森的性能与文献中报道的估计值同意。在固定领先顺序的相同参数的情况下,在当前工作中,给出了弹性区域中$πη$散射幅度的模型的预测,并使用K-Matrix方法单位化。计算单位化散射幅度的极点,这些散射幅度确定了$ A_0(980)$和$ A_0(1450)$的质量和衰减宽度。发现该模型预测一个低于1 GEV的等值器标量状态,质量为984 $ \ pm $ 6 MEV和衰减宽度108 $ \ pm $ 30 MEV,这是$ A_0(980)$的明显信号。在这项工作中提取的$ a_0 $杆进一步支持了该模型预测的标量膜的混合模式的合理性,根据该模型,在1 GEV下方和1 GEV以上的标量之间存在着重要的基础混合,而低于1 GEV的标量通常具有四夸张的性质,而高于1 GEV的Quark-GEV则与Quark-Antiquark Quark-Antiquark Satiquark Sticquark Statiquark Statiquark较接近。还提供了各种散射长度以及$ a_0(1450)$的属性的预测。
The generalized linear sigma model for mixing among two- and four-quark components of scalar (and psedudosclar) mesons below and above 1 GeV is applied to the $πη$ channel in which the isovector scalars $a_0(980)$ and $a_0(1450)$ are probed. In the leading order, the model parameters have been previously fixed by various low-energy experimental data, and then applied to $ππ$ and $πK$ channels in which the properties of the light and broad $σ$ and $κ$ mesons are extracted in agreement with estimates reported in the literature. With the same parameters fixed in the leading order, in the present work the prediction of the model for the $πη$ scattering amplitude in the elastic region is given and unitarized with the K-matrix method. The poles of the unitarized scattering amplitude, which determine the mass and decay width of $a_0(980)$ and $a_0(1450)$ are computed. It is found that the model predicts an isovector scalar state below 1 GeV, with mass 984 $\pm$ 6 MeV and decay width 108 $\pm$ 30 MeV which is a clear signal for the $a_0(980)$. The $a_0$ pole extracted in this work, further supports the plausibility of the mixing patterns for scalar mesons predicted by this model according to which there is a significant underlying mixing among scalars below and above 1 GeV, with those below 1 GeV being generally of four-quark nature while those above 1 GeV being overall closer to quark-antiquark states. Predictions for various scattering lengths as well as for properties of $a_0(1450)$ are also presented.