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Universal opening of four-loop scattering amplitudes to trees

Selomit Ramírez-Uribe, Roger J. Hernández-Pinto, Germán Rodrigo, German F. R. Sborlini, William J. Torres Bobadilla

2021Journal of High Energy Physics24 citationsDOIOpen Access PDF

Abstract

A bstract The perturbative approach to quantum field theories has made it possible to obtain incredibly accurate theoretical predictions in high-energy physics. Although various techniques have been developed to boost the efficiency of these calculations, some ingredients remain specially challenging. This is the case of multiloop scattering amplitudes that constitute a hard bottleneck to solve. In this paper, we delve into the application of a disruptive technique based on the loop-tree duality theorem, which is aimed at an efficient computation of such objects by opening the loops to nondisjoint trees. We study the multiloop topologies that first appear at four loops and assemble them in a clever and general expression, the N 4 MLT universal topology . This general expression enables to open any scattering amplitude of up to four loops, and also describes a subset of higher order configurations to all orders. These results confirm the conjecture of a factorized opening in terms of simpler known subtopologies, which also determines how the causal structure of the entire loop amplitude is characterized by the causal structure of its subtopologies. In addition, we confirm that the loop-tree duality representation of the N 4 MLT universal topology is manifestly free of noncausal thresholds, thus pointing towards a remarkably more stable numerical implementation of multiloop scattering amplitudes.

Topics & Concepts

PhysicsScattering amplitudeDuality (order theory)ScatteringTopology (electrical circuits)ComputationConjectureRepresentation (politics)AmplitudeTheoretical physicsPerturbation theory (quantum mechanics)BottleneckField (mathematics)Quantum field theoryLoop (graph theory)Field theory (psychology)Statistical physicsOrder (exchange)QuantumNetwork topologyScattering theoryForward scatterQuantum chromodynamicsQuantum mechanicsMathematical physicsQuantum computerQuantum electrodynamicsLink (geometry)FactorizationParticle physics theoretical and experimental studiesHigh-Energy Particle Collisions ResearchParticle Accelerators and Free-Electron Lasers
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