Logo image
Sharpening the shape analysis for higher-dimensional operator searches
Journal article   Open access   Peer reviewed

Sharpening the shape analysis for higher-dimensional operator searches

Sylvain Fichet, Alberto Tonero and Patricia Rebello Teles
Physical review. D, Vol.96(3), 036003
08-03-2017

Abstract

Astronomy & Astrophysics Physics, Particles & Fields Science & Technology Physical Sciences Physics
When the Standard Model is interpreted as the renormalizable sector of a low-energy effective theory, the effects of new physics are encoded into a set of higher-dimensional operators. These operators potentially deform the shapes of Standard Model differential distributions of final states observable at colliders. We describe a simple and systematic method to obtain optimal estimations of these deformations when using numerical tools, like Monte Carlo simulations. A crucial aspect of this method is minimization of the estimation uncertainty: We demonstrate how the operator coefficients have to be set in the simulations in order to get optimal results. The uncertainty on the interference term turns out to be the most difficult to control and grows very quickly when the interference is suppressed. We exemplify our method by computing the deformations induced by the π’ͺ3β’π‘Š operator in π‘Š+β’π‘Šβˆ’ production at the LHC, and by deriving a bound on π’ͺ3β’π‘Š using 8 TeV CMS data.
pdf
PhysRevD.96.036003648.15 kBDownloadView
Open Access CC BY V4.0
url
https://doi.org/10.1103/PhysRevD.96.036003View
Published (Version of record) Open

Related links

Metrics

Details

Logo image