ZZ+jet and Graviton+jet at NLO QCD: recent applications using GOLEM methods
Stefan Karg, Thomas Binoth, Tanju Gleisberg, Nikolas Kauer, Michael, Kramer, Qiang Li, Gregory Sanguinetti, Dieter Zeppenfeld

TL;DR
This paper discusses recent advances in calculating precise NLO QCD corrections for ZZ+jet and graviton+jet production at hadron colliders using GOLEM tensor reduction methods, crucial for Higgs and new physics searches.
Contribution
It introduces the application of GOLEM tensor reduction methods to compute NLO corrections for ZZ+jet and graviton+jet processes at hadron colliders, enhancing prediction accuracy.
Findings
NLO corrections for ZZ+jet improve background modeling for Higgs searches.
NLO graviton+jet calculations aid in graviton search strategies at colliders.
Demonstrates the effectiveness of GOLEM methods in complex NLO computations.
Abstract
In this talk we discuss recent progress concerning precise predictions for hadron colliders. We show results of two applications of tensor reduction using GOLEM methods: the next-to-leading order (NLO) corrections to jet as an important background for Higgs particle and new physics searches at hadron colliders, and the NLO corrections to graviton plus jet hadro-production, which is an important channel for graviton searches at the Tevatron and the LHC.
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Computational Physics and Python Applications · Quantum Chromodynamics and Particle Interactions
