论文标题

制图重力介导的散射幅度:标量和光子

Cartographing gravity-mediated scattering amplitudes: scalars and photons

论文作者

Knorr, Benjamin, Pirlo, Samuel, Ripken, Chris, Saueressig, Frank

论文摘要

有效的作用包括在给定量子场理论中产生的所有量子校正。因此,它是一个强大的生成功能,可以从中可以通过树级计算来构建量子校正的散射幅度。在这项工作中,我们使用该框架研究重力介导的两到两个散射过程,涉及标量和光子作为外部颗粒。我们构建了一个最小的相互作用基础,从而捕获了对这些过程的所有贡献。该分类超出了有效领域理论中使用的扩展,因为它保留了传播器和耦合中最普遍的动量依赖性。通过这种方式,我们得出了与相对论量子场理论兼容的最通用的散射幅度。与一般相对性中的树级散射相比,我们确定了通过相互作用顶点的非平凡动量依赖性产生的差分横截面。

The effective action includes all quantum corrections arising in a given quantum field theory. Thus it serves as a powerful generating functional from which quantum-corrected scattering amplitudes can be constructed via tree-level computations. In this work we use this framework for studying gravity-mediated two-to-two scattering processes involving scalars and photons as external particles. We construct a minimal basis of interaction monomials capturing all contributions to these processes. This classification goes beyond the expansions used in effective field theory since it retains the most general momentum dependence in the propagators and couplings. In this way, we derive the most general scattering amplitudes compatible with a relativistic quantum field theory. Comparing to tree-level scattering in general relativity, we identify the differential cross sections which are generated by the non-trivial momentum dependence of the interaction vertices.

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