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A. De Roeck

Researcher at CERN

Publications -  73
Citations -  5648

A. De Roeck is an academic researcher from CERN. The author has contributed to research in topics: Large Hadron Collider & Higgs boson. The author has an hindex of 36, co-authored 73 publications receiving 5488 citations. Previous affiliations of A. De Roeck include University of California, Davis & University of Antwerp.

Papers
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Determination of jet energy calibration and transverse momentum resolution in CMS

S. Chatrchyan, +2271 more
TL;DR: In this article, the transverse momentum balance in dijet and γ/Z+jets events is used to measure the jet energy response in the CMS detector, as well as the transversal momentum resolution.
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The snowmass Points and slopes: benchmarks for SUSY searches

TL;DR: The "Snowmass Points and Slopes" (SPS) as mentioned in this paper are a set of benchmark points and parameter lines in the MSSM parameter space corresponding to different scenarios in the search for Supersymmetry at present and future experiments.
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Supersymmetry Parameter Analysis: SPA Convention and Project

Juan Antonio Aguilar-Saavedra, +128 more
TL;DR: In this article, a supersymmetry Parameter Analysis SPA (SPA) scheme is proposed based on a consistent set of conventions and input parameters, which connect parameters in different schemes and relate the Lagrangian parameters to physical observables at LHC and high energy e+e-linear collider experiments.
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Search for invisible decays of Higgs bosons in the vector boson fusion and associated ZH production modes

S. Chatrchyan, +2233 more
TL;DR: The observed (expected) upper limit on the invisible branching fraction at 0.58 (0.44) is interpreted in terms of a Higgs-portal model of dark matter interactions.
Journal ArticleDOI

Supersymmetry parameter analysis : SPA convention and project

Juan Antonio Aguilar-Saavedra, +128 more
TL;DR: In this article, a supersymmetry Parameter Analysis SPA (SPA) scheme is proposed based on a consistent set of conventions and input parameters, which connect parameters in different schemes and relate the Lagrangian parameters to physical observables at LHC and high energy e(+)e(-) linear collider experiments, i.e., masses, mixings, decay widths and production cross sections for supersymmetric particles.