论文标题

测得的质子电磁结构偏离理论预测

Measured proton electromagnetic structure deviates from theoretical predictions

论文作者

Li, R., Sparveris, N., Atac, H., Jones, M. K., Paolone, M., Akbar, Z., Gayoso, C. Ayerbe, Berdnikov, V., Biswas, D., Boer, M., Camsonne, A., Chen, J. -P., Diefenthaler, M., Duran, B., Dutta, D., Gaskell, D., Hansen, O., Hauenstein, F., Heinrich, N., Henry, W., Horn, T., Huber, G. M., Jia, S., Joosten, S., Karki, A., Kay, S. J. D., Kumar, V., Li, X., Li, W. B., Liyanage, A. H., Malace, S., Markowitz, P., McCaughan, M., Meziani, Z. -E., Mkrtchyan, H., Morean, C., Muhoza, M., Narayan, A., Pasquini, B., Rehfuss, M., Sawatzky, B., Smith, G. R., Smith, A., Trotta, R., Yero, C., Zheng, X., Zhou, J.

论文摘要

可见的世界建立在质子上,质子是物质本质上稳定的唯一复合构建块。因此,理解物质的形成依赖于解释质子结合状态的动力学和特性。质子的基本特性涉及系统对外部电磁场的响应。它的特征是电磁极化能力描述了系统内部的电荷和磁化分布的容易被电磁场扭曲。此外,广义极化能力绘制出受电磁场的质子密度的产生变形。他们披露了有关基础系统动力学的基本信息,并提供了一个关键,以根据结合其基本夸克和Gluon成分的强相互作用理论来解码质子结构。特别令人感兴趣的是质子的电概括极化性的难题,该质子尚未解决二十年。在这里,我们报告了质子电磁通用极化的测量值,在低四弹式转移平方的情况下。我们证明了质子电通元极化性的行为与核理论的预测相矛盾,并在质子中诱导极化的空间分布中得出签名。报告的测量表明,在质子中存在一种新的,尚未掌握的动力学机制,并对核理论提出了显着的挑战。

The visible world is founded on the proton, the only composite building block of matter that is stable in nature. Consequently, understanding the formation of matter relies on explaining the dynamics and the properties of the proton's bound state.A fundamental property of the proton involves the response of the system to an external electromagnetic field. It is characterized by the electromagnetic polarizabilities that describe how easily the charge and magnetization distributions inside the system are distorted by the electromagnetic field. Moreover, the generalized polarizabilities map out the resulting deformation of the densities in a proton subject to an electromagnetic field. They disclose essential information about the underlying system dynamics and provide a key for decoding the proton structure in terms of the theory of the strong interaction that binds its elementary quark and gluon constituents. Of particular interest is a puzzle in the electric generalized polarizability of the proton that remains unresolved for two decades. Here we report measurements of the proton's electromagnetic generalized polarizabilities at low four-momentum transfer squared. We show evidence of an anomaly to the behaviour of the proton's electric generalized polarizability that contradicts the predictions of nuclear theory and derive its signature in the spatial distribution of the induced polarization in the proton. The reported measurements suggest the presence of a new, not-yet-understood dynamical mechanism in the proton and present notable challenges to the nuclear theory.

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