Scenery from the top: Study of the third generation squarks at the CERN LHC
- 27 December 2002
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 66 (11) , 115004
- https://doi.org/10.1103/physrevd.66.115004
Abstract
In the minimal supersymmetric standard model the properties of the third generation sfermions are important from the viewpoint of discriminating the SUSY breaking models and in the determination of the Higgs boson mass. If gluinos are copiously produced at the CERN Large Hadron Collider, gluino decays into through a top squark and sbottom can be studied using hadronic decays of the top quark. Using a W sideband method to estimate combinatorial backgrounds, the kinematical end point of the gluino decays can be measured. This implies that the fundamental parameters related to the third generation squarks might be reliably determined. The top-quark polarization dependence in the decay process may also be extracted by looking at the b jet distribution near the kinematical end point.
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This publication has 18 references indexed in Scilit:
- Sfermion masses in Nelson-Strassler-type models: Supersymmetric standard models coupled with superconformal field theoriesPhysical Review D, 2001
- Natural effective supersymmetryNuclear Physics B, 2000
- Suppressing flavor anarchyJournal of High Energy Physics, 2000
- Large squark and slepton masses for the first-two generations in the anomalous U(1) SUSY breaking modelsPhysics Letters B, 1999
- The more Minimal Supersymmetric Standard ModelPhysics Letters B, 1996
- Predictions from a U(2) flavour symmetry in supersymmetric theoriesPhysics Letters B, 1996
- Horizontal symmetries for the supersymmetric flavor problemNuclear Physics B, 1996
- Naturalness constraints in supersymmetric theories with non-universal soft termsPhysics Letters B, 1995
- Naturalness in supersymmetry, or raising the supersymmetry breaking scalePhysics Letters B, 1990
- Supersymmetry, supergravity and particle physicsPhysics Reports, 1984