A Method for the Precision Mass Measurement of the Stop Quark at the International Linear Collider
arXiv:0712.4010 · doi:10.1088/1126-6708/2008/09/076
Abstract
Many supersymmetric models predict new particles within the reach of the next generation of colliders. For an understanding of the model structure and the mechanism(s) of symmetry breaking, it is important to know the masses of the new particles precisely. In this article the measurement of the mass of the scalar partner of the top quark (stop) at an e+e- collider is studied. A relatively light stop is motivated by attempts to explain electroweak baryogenesis and can play an important role in dark matter relic density. A method is presented which makes use of cross-section measurements near the pair-production threshold as well as at higher center-of-mass energies. It is shown that this method not only increases the statistical precision, but also greatly reduces the systematic uncertainties, which can be important. Numerical results are presented, based on a realistic event simulation, for two signal selection strategies: using conventional selection cuts, and using an Iterative Discriminant Analysis (IDA). Our studies indicate that a precision of $Δ\mstop = 0.42$ GeV can be achieved, representing a major improvement over previous studies. While the analysis of stops is particularly challenging due to the possibility of stop hadronization, the general procedure could be applied to the mass measurement of other particles as well. We also comment on the potential of the IDA to discover a stop quark in this scenario, and we revisit the accuracy of the theoretical predictions for the neutralino relic density
41 pages, 14 figures, in JHEP format
References in corpus (11)
- PYTHIA 6.4 Physics and Manual
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- PYTHIA 6.3 Physics and Manual
- Heavy Quark Pair Production near Threshold with Potential Non-Relativistic QCD
- Slepton Production at e+e- and e-e- Linear Colliders
- Renormalization Group Improved Sum Rule Analysis for the Bottom Quark Mass
- SIMDET - Version 4 A Parametric Monte Carlo for a TESLA Detector
- Impact of SUSY CP Phases on Stop and Sbottom Decays in the MSSM
- Collider searches and cosmology in the MSSM with heavy scalars
- Precision Measurements in the Scalar Top Sector of the MSSM at a Linear e+e- Collider
- Scalar Top Quark Studies with Various Visible Energies
Cited by in corpus (5)
- Light Stop Searches at the LHC in Events with One Hard Photon or Jet and Missing Energy
- Physics Beyond the Standard Model: Supersymmetry
- Precision Measurements of the Stop Quark Mass at the ILC
- Complementarity of the CERN Large Hadron Collider and the International Linear Collider
- Scalar Top Studies from Morioka'95 to DESY'07