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SANC integrator in the progress: QCD and EW contributions

2012/07/18 by D. Bardin, D.Y. Bardin, S. Bondarenko +6 · 2 citations
Computer Science · Mathematics · Physics and Astronomy · #Advanced Data Storage Technologies #Computer science #Convolution (computer science) #Differential (mechanical device) #Hadron #High-Energy Particle Collisions Research #Integrator #Large Hadron Collider #Mathematics #Monte Carlo method #Nuclear physics #Particle physics #Particle physics theoretical and experimental studies #Physics #Product (mathematics) #Quantum chromodynamics #Quantum mechanics #Set (abstract data type) #Voltage #hep-ph

paper · pdf · doi:10.1134/s002136401217002x

arxiv created 2012/07/18 · openalex publication_date 2012/11/01 · arxiv updated 2015/06/05 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

Modules and packages for the one-loop calculations at the partonic level represent the first level of SANC output computer product. The next level represents Monte Carlo integrator mcsanc, realizing fully differential hadron level calculations (convolution with PDF) for the HEP processes at LHC. In this paper we describe the implementation into the framework mcsanc first set of processes: DY NC, DY CC, f1 f'1 → HW^ ± (Z) and single top production. Both EW and QCD NLO corrections are taken into account. A comparison of SANC results with those existing in the world literature is given.

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