论文标题

LHC和激光束实验的光子 - 光子物理,现在和将来

Photon-photon physics at the LHC and laser beam experiments, present and future

论文作者

Schoeffel, L., Baldenegro, C., Hamdaoui, H., Hassani, S., Royon, C., Saimpert, M.

论文摘要

在某些运行条件下,CERN大型强子对撞机(LHC)可以被视为光子光子对撞机。实际上,在质子质子,质子离子,离子离子碰撞中,当传入颗粒在非常非常近的碰撞中非常接近时,传入的质子或离子几乎保持完整并沿着梁轴继续其路径。然后,仅这些超偏用电荷颗粒(质子或离子)的电磁(EM)场相互作用,以留在LHC实验的中央检测器中。兴趣是,光子 - 光子相互作用发生在前所未有的能量(每个核对几个TEV)上,其中量子电动力学(QED)理论可以在极端条件下进行测试,并且可以发现自然界不可预见的自然定律。在本报告中,我们提出了对特定反应的重点,称为轻度散射,其中两个传入的光子相互作用,产生另一对光子。我们描述了如何在LHC上获得实验结果。此外,我们讨论了专用激光束设备中壳光子光子相互作用的前景。新物理学的潜在特征可能表现为折射率中的共振偏差,这是由异常的轻度散射效应引起的。重要的是,我们解释了如何使用此过程来探测除标准模型之外的物理,例如包括大额外维度的理论。最后,为将来的数据或实验提供了一些观点和想法。

Under certain running conditions, the CERN Large Hadron Collider (LHC) can be considered as a photon-photon collider. Indeed, in proton-proton, proton-ion, ion-ion collisions, when incoming particles pass very close to each other in very peripheral collisions, the incoming protons or ions remain almost intact and continue their path along the beam axis. Then, only the electromagnetic (EM) fields of these ultra-relativistic charged particles (protons or ions) interact to leave a signature in the central detectors of the LHC experiments. The interest is that the photon-photon interactions happen at unprecedented energies (a few TeV per nucleon pairs) where the quantum electrodynamics (QED) theory can be tested in extreme conditions and unforeseen laws of nature could be discovered. In this report, we propose a focus on a particular reaction, called light-by-light scattering in which two incoming photons interact, producing another pair of photons. We describe how experimental results have been obtained at the LHC. In addition, we discuss prospects for on-shell photon-photon interactions in dedicated laser beam facilities. Potential signatures of new physics might manifest as resonant deviations in the refractive index, induced by anomalous light-by-light scattering effects. Importantly, we explain how this process can be used to probe the physics beyond the standard model such as theories that include large extra dimensions. Finally, some perspectives and ideas are given for future data taking or experiments.

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