论文标题

feynmg:标量调节理论的Feynrules扩展

FeynMG: a FeynRules extension for scalar-tensor theories of gravity

论文作者

Muñoz, Sergio Sevillano, Copeland, Edmund J., Millington, Peter, Spannowsky, Michael

论文摘要

用简单的图形规则来表示相互作用量子场理论的扰动扩展的能力已彻底改变了粒子物理(以及其他地方)的计算。此外,这些规则很容易自动化,这一过程催化了符号代数软件包的兴起。但是,在扩展的重力理论(例如标量调节理论)的情况下,必须先到Lagrangian应用此自动化,或者至少要利用现有的软件管道。我们提出了一个Mathematica Code Feynmg,该代码与著名的软件包Feynrules一起工作,以做到这一点:Feynmg将Feynrules模型文件作为非重力理论和用户支持的重力Lagrangational Lagrangian的输入。 FeynMG provides functionality that inserts the minimal gravitational couplings of the degrees of freedom specified in the model file, determines the couplings of the additional tensor and scalar degrees of freedom (the metric and the scalar field from the gravitational sector), and preconditions the resulting Lagrangian so that it can be passed to FeynRules, either directly or by outputting an updated FeynRules model 文件。然后,可以使用现有的通用输出格式和其他分析软件包的接口来确定Feynman规则并通过Feynrules输出。

The ability to represent perturbative expansions of interacting quantum field theories in terms of simple diagrammatic rules has revolutionized calculations in particle physics (and elsewhere). Moreover, these rules are readily automated, a process that has catalysed the rise of symbolic algebra packages. However, in the case of extended theories of gravity, such as scalar-tensor theories, it is necessary to precondition the Lagrangian to apply this automation or, at the very least, to take advantage of existing software pipelines. We present a Mathematica code FeynMG, which works in conjunction with the well-known package FeynRules, to do just that: FeynMG takes as inputs the FeynRules model file for a non-gravitational theory and a user-supplied gravitational Lagrangian. FeynMG provides functionality that inserts the minimal gravitational couplings of the degrees of freedom specified in the model file, determines the couplings of the additional tensor and scalar degrees of freedom (the metric and the scalar field from the gravitational sector), and preconditions the resulting Lagrangian so that it can be passed to FeynRules, either directly or by outputting an updated FeynRules model file. The Feynman rules can then be determined and output through FeynRules, using existing universal output formats and interfaces to other analysis packages.

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