Content area

Abstract

We study the prospects to measure the CP-sensitive triple-product asymmetries in neutralino production \(e^{+} e^{-} \to\tilde{\chi}^{0}_{i}\tilde{\chi}^{0}_{1}\) and subsequent leptonic two-body decays \(\tilde{\chi}^{0}_{i} \to \tilde{\ell}_{R} \ell\), \(\tilde{\ell}_{R} \to \tilde{\chi}^{0}_{1} \ell\), for =e,μ, within the Minimal Supersymmetric Standard Model. We include a full detector simulation of the International Large Detector for the International Linear Collider. The simulation was performed at a center-of-mass energy of \(\sqrt{s}=500\) GeV, including the relevant Standard Model background processes, a realistic beam energy spectrum, beam backgrounds and a beam polarization of 80% and −60% for the electron and positron beams, respectively. In order to effectively disentangle different signal samples and reduce SM and SUSY backgrounds we apply a method of kinematic reconstruction. Assuming an integrated luminosity of 500 fb−1 collected by the experiment and the performance of the current ILD detector, we arrive at a relative measurement accuracy of 10% for the CP-sensitive asymmetry in our scenario. We demonstrate that our method of signal selection using kinematic reconstruction can be applied to a broad class of scenarios and it allows disentangling processes with similar kinematic properties.

Details

Title
Measurement of CP asymmetries in neutralino production at the ILC
Author
Kittel, O 1 ; Moortgat-Pick, G 2 ; Rolbiecki, K 3 ; Schade, P 4 ; Terwort, M 3 

 Departamento de Física Teórica y del Cosmos and CAFPE, Universidad de Granada, Granada, Spain 
 University of Hamburg, Hamburg, Germany; DESY, Hamburg, Germany 
 DESY, Hamburg, Germany 
 DESY, Hamburg, Germany; CERN, Geneve 23, Switzerland 
Pages
1-14
Publication year
2012
Publication date
Jan 2012
Publisher
Springer Nature B.V.
ISSN
14346044
e-ISSN
14346052
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2294073886
Copyright
The European Physical Journal C is a copyright of Springer, (2012). All Rights Reserved.