Tropical amplitudes for colored Lagrangians

IF 5.4 1区 物理与天体物理 Q1 Physics and Astronomy
Nima Arkani-Hamed, Carolina Figueiredo, Hadleigh Frost, Giulio Salvatori
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引用次数: 0

Abstract

Recently a new formulation for scattering amplitudes in Tr(Φ3) theory has been given based on simple combinatorial ideas in the space of kinematic data. This allows all-loop integrated amplitudes to be expressed as “curve integrals” defined using tropical building blocks — the “headlight functions”. This paper shows how the formulation extends to the amplitudes of more general Lagrangians. We will present a number of different ways of introducing tropical “numerator functions” that allow us to describe general Lagrangian interactions. The simplest family of these “tropical numerators” computes the amplitudes of interesting Lagrangians with infinitely many interactions. We also describe methods for tropically formulating the amplitudes for general Lagrangians. One uses a variant of “Wick contraction” to glue together numerator factors for general interaction vertices. Another uses a natural characterization of polygons on surfaces to give a novel combinatorial description of all possible diagrams associated with arbitrary valence interactions.

有色拉格朗日量的热带振幅
最近,基于运动学数据空间的简单组合思想,在Tr(Φ3)理论中给出了一个新的散射振幅公式。这允许全回路积分振幅表示为“曲线积分”,使用热带构造块定义-“前灯函数”。本文展示了该公式如何推广到更一般的拉格朗日量的幅值。我们将提出许多引入热带“分子函数”的不同方法,这些方法使我们能够描述一般的拉格朗日相互作用。这些“热带分子”中最简单的一类计算具有无穷多相互作用的有趣拉格朗日量的振幅。我们还描述了一般拉格朗日量的振幅的热带公式的方法。一种方法是使用“灯芯收缩”的变体,将一般相互作用顶点的分子因子粘合在一起。另一种是利用曲面上多边形的自然特征,对任意价相互作用的所有可能图给出一种新的组合描述。
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来源期刊
Journal of High Energy Physics
Journal of High Energy Physics 物理-物理:粒子与场物理
CiteScore
10.30
自引率
46.30%
发文量
2107
审稿时长
1.5 months
期刊介绍: The aim of the Journal of High Energy Physics (JHEP) is to ensure fast and efficient online publication tools to the scientific community, while keeping that community in charge of every aspect of the peer-review and publication process in order to ensure the highest quality standards in the journal. Consequently, the Advisory and Editorial Boards, composed of distinguished, active scientists in the field, jointly establish with the Scientific Director the journal''s scientific policy and ensure the scientific quality of accepted articles. JHEP presently encompasses the following areas of theoretical and experimental physics: Collider Physics Underground and Large Array Physics Quantum Field Theory Gauge Field Theories Symmetries String and Brane Theory General Relativity and Gravitation Supersymmetry Mathematical Methods of Physics Mostly Solvable Models Astroparticles Statistical Field Theories Mostly Weak Interactions Mostly Strong Interactions Quantum Field Theory (phenomenology) Strings and Branes Phenomenological Aspects of Supersymmetry Mostly Strong Interactions (phenomenology).
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