论文标题

基本常数管理的直接可访问性

Direct accessibility of the fundamental constants governing light-by-light scattering

论文作者

Karbstein, Felix, Ullmann, Daniel, Mosman, Elena A., Zepf, Matt

论文摘要

量子场理论预测真空表现出对强电磁场的非线性响应。这个基本宗旨在实验上仍然具有挑战性,尚待在实验室中进行测试。我们介绍了概念证明,并详细介绍了实验设置的理论分析,以通过与高强度泵激光器的亮X射线探针碰撞产生的量子真空信号的精确测量。该信号具有分量平行和垂直于入射X射线探针的分量。我们的概念验证测量结果表明,可以通过许多数量级有效地抑制背景,这不仅应促进检测非线性真空反应的垂直极化成分,而且甚至使平行的极化组件在实验上首次访问。值得注意的是,即使在存在泵波动和比对抖动的情况下,信号与强烈的X射线探针的角度分离也可以进行精确测量。这可以直接访问对逐光散射的低能常数。

Quantum field theory predicts the vacuum to exhibit a non-linear response to strong electromagnetic fields. This fundamental tenet has remained experimentally challenging and is yet to be tested in the laboratory. We present proof of concept and detailed theoretical analysis of an experimental setup for precision measurements of the quantum vacuum signal generated by the collision of a brilliant x-ray probe with a high-intensity pump laser. The signal features components polarised parallel and perpendicularly to the incident x-ray probe. Our proof-of-concept measurements show that the background can be efficiently suppressed by many orders of magnitude which should not only facilitate a detection of the perpendicularly polarised component of non-linear vacuum response, but even make the parallel polarised component experimentally accessible for the first time. Remarkably, the angular separation of the signal from the intense x-ray probe enables precision measurements even in presence of pump fluctuations and alignment jitter. This provides direct access to the low-energy constants governing light-by-light scattering.

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