论文标题

走向局部的S-矩阵理论

Towards a Localised S-Matrix Theory

论文作者

Karamitros, Dimitrios, Pilaftsis, Apostolos

论文摘要

我们制定了一种S-矩阵理论,其中始终考虑涉及散射过程的粒子相互作用的定位效应。在所有相互作用的无限传播的极限下,S-Matrix采用其标准形式。为了更好地理解这种形式主义中新兴量子现象的重要性,我们考虑了一种可解决的现场理论模型,并在相互作用的顶点上具有空间高斯差异。该可解决的模型以前是在文献中引入的,可以准确描述接近或远离源的检测区域。与经典光学的光衍射相似,我们称这两个区域近场和远场区域,或菲涅耳和弗劳恩霍夫地区。我们回顾一个问题,如果混合介质发生在菲涅尔区域中,是否会产生振荡模式。除了证实了前菲涅尔和弗劳恩霍夫(Fraunhofer)方案中S-矩阵振幅的某些早期发现外,我们还观察到有关其角度依赖性的几个新颖特征,这些特征在文献中尚未考虑到。特别是,我们获得了``量子倾斜因子'',它抑制了向后方向的粒子传播,从而为其起源于衍射光学器件提供了明确的量子场理论描述。当前和未来的对山脉以及短基线和长基线中微子实验都将从这种整体局部S-矩阵理论中提供的许多预测中受益匪浅。

We formulate an S-matrix theory in which localisation effects of the particle interactions involved in a scattering process are consistently taken into account. In the limit of an infinite spread of all interactions, the S-matrix assumes its standard form. To better understand the significance of the emerging quantum phenomena in this formalism, we consider a solvable field-theoretic model with spatial Gaussian spreads at the interaction vertices. This solvable model, which was previously introduced in the literature, enables accurate descriptions of detection regions that are either close to or far from the source. In close analogy with light diffraction in classical optics, we call these two regions near-field and far-field zones, or the Fresnel and Fraunhofer regions. We revisit the question whether mixed mediators produce an oscillating pattern if their detection occurs in the Fresnel region. Besides corroborating certain earlier findings of the S-matrix amplitude in the forward Fresnel and Fraunhofer regimes, we observe several novel features with respect to its angular dependence which have not been accounted before in the literature. In particular, we obtain a ``quantum obliquity factor'' that suppresses particle propagation in the backwards direction, thereby providing an explicit quantum field-theoretic description for its origin in diffractive optics. Present and future colliders, as well as both short and long baseline neutrino experiments, would greatly benefit from the many predictions that can be offered from such a holistic localised S-matrix theory.

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