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AbstractAbstract
[en] One of the benchmark processes for the optimisation of the detector concepts proposed for the International Linear Collider is Chargino and Neutralino pair production in an mSugra scenario where χ1± and χ20 are mass degenerate and decay into W±χ10 and Z0χ10, respectively. In this case the separation of both processes in the fully hadronic decay mode is very sensitive to the jet energy resolution and thus to the particle flow performance. The mass resolutions and cross-section uncertainties achievable with the ILD detector concept are studied in full simulation at a center of mass energy of 500 GeV, an integrated luminosity of 500 fb-1 and beam polarisations of P(e+,e-)=(30%,-80%). For the χ1± and χ20 pair production cross-sections, statistical precisions of 0.84% and 2.75% are achieved, respectively. The masses of χ1±, χ20 and χ10 can be determined with a statistical precision of 2.9 GeV, 1.7 GeV and 1.0 GeV, respectively. (orig.)
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Jun 2009; 16 p; ISSN 0418-9833; 

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ACCURACY, COMPUTERIZED SIMULATION, EFFECTIVE MASS, ELECTRON-POSITRON INTERACTIONS, ENERGY RESOLUTION, GEV RANGE 100-1000, INTEGRAL CROSS SECTIONS, LINEAR COLLIDERS, MASS RESOLUTION, MASS SPECTROSCOPY, MULTIPLE PRODUCTION, OPTIMIZATION, PAIR PRODUCTION, PARTICLE DISCRIMINATION, POLARIZED BEAMS, SPARTICLES, W MINUS BOSONS, W PLUS BOSONS, WEAK HADRONIC DECAY, Z NEUTRAL BOSONS
ACCELERATORS, BEAMS, BOSONS, CROSS SECTIONS, DECAY, ELEMENTARY PARTICLES, ENERGY RANGE, GEV RANGE, INTERACTIONS, INTERMEDIATE BOSONS, INTERMEDIATE VECTOR BOSONS, LEPTON-LEPTON INTERACTIONS, LINEAR ACCELERATORS, MASS, PARTICLE DECAY, PARTICLE IDENTIFICATION, PARTICLE INTERACTIONS, PARTICLE PRODUCTION, POSTULATED PARTICLES, RESOLUTION, SIMULATION, SPECTROSCOPY, WEAK PARTICLE DECAY
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