论文标题

向量梅森 - 核子散射长度$ |α_{vn} | $并跟踪异常能量对核子质量$ t_ {a} $

Vector meson-nucleon scattering length $|α_{VN}|$ and trace anomalous energy contribution to the nucleon mass $T_{A}$

论文作者

Han, Chengdong, Kou, Wei, Wang, Rong, Chen, Xurong

论文摘要

媒介中和核子的低能散射过程是研究非扰动QCD的重要窗口。向量介子与核子,媒介中核子散射长度$ |α_{VN} | $的相互作用是规际抗相互作用研究的重要组成部分。如今,已经使用最近的Photroduction实验数据或准数据进行了许多散射长度值$ |α_{VN} | $。此外,对质子质量的痕量异常贡献的研究也是非扰动QCD和强子物理学中的热门话题。但是,很难在实验上测量质子痕量痕量异常,并且对质子的痕量异常的研究仍然尚无定论。在这项研究中,我们确定了矢量中 - 普罗顿$ |α_{vp} | $的散射长度与质子质量$ t_ {a} $的痕量异常贡献之间的关系。通过使用矢量中介孔优势模型提取的散射长度值,我们获得了质子质量$ t_ {a} $ =(22.8 $ \%$ $ $ $ $ \ pm $ 1.2 $ 1.2 $ \%$)的痕量异常贡献,这是与lattice qcd计算的23 $ \%$相似的数量级。我们猜想核子的痕量异常贡献与载体介子探针的类型无关。我们希望对媒介中核子散射长度的高精度测量值可以使我们有更好的机会探索核子质量的起源。

Low-energy scattering processes of vector meson and nucleon are an important window for studying non-perturbative QCD. The interaction of vector meson with nucleon, vector meson-nucleon scattering length $|α_{VN}|$, is an important component of the study of hadronic interactions. Nowadays many scattering length values $|α_{VN}|$ have been reported using the recent photoproduction experiment data or quasi data. In addition, the study of trace anomalous energy contribution to the proton mass is also a hot topic in non-perturbative QCD and hadron physics. However, it is difficult to measure proton trace anomalous energy experimentally, and the study of the trace anomaly of proton is still inconclusive. In this study, we established the relationship between the scattering length of the vector meson-proton $|α_{Vp}|$ and the trace anomaly contribution of the proton mass $T_{A}$. With the scattering length values extracted by using the Vector Meson Dominance model, we obtained the trace anomaly contribution of the proton mass $T_{A}$ = (22.8$\%$ $\pm$ 1.2$\%$), which is of similar order of magnitude as the 23$\%$ given by Lattice QCD calculation. We conjecture that the trace anomaly contribution of nucleon is independent of the type of vector meson probe. We hope that high precision measurements of vector meson-nucleon scattering length could give us a better chance to explore the origin of the nucleon mass.

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