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AbstractAbstract
[en] The main goal of new physics searches at a future Linear Collider is the precise determination of the underlying new physics model. The physics potential of the ILC as well as the multi-TeV option collider CLIC have to be optimized with regard to expected results from the LHC. The exploitation of spin effects plays a crucial role in this regard. After a short status report of the Linear Collider design and physics requirements, this article explains fundamentals in polarization and provides an overview of the impact of these spin effects in electroweak precision physics. (orig.)
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Source
Dec 2010; 10 p; ISSN 0418-9833; 

Record Type
Report
Literature Type
Progress Report
Report Number
Country of publication
ANGULAR DISTRIBUTION, ANNIHILATION, ASYMMETRY, BEAM BUNCHING, BEAM LUMINOSITY, COLLIDING BEAMS, ELECTRON BEAMS, ELECTRON-POSITRON INTERACTIONS, LECTURES, LINEAR COLLIDERS, NEUTRAL-CURRENT INTERACTIONS, POLARIZATION-ASYMMETRY RATIO, POLARIZED BEAMS, POSITRON BEAMS, PROGRESS REPORT, SPIN ORIENTATION, WEINBERG ANGLE, WEINBERG-SALAM GAUGE MODEL
ACCELERATORS, BEAM DYNAMICS, BEAMS, DIMENSIONLESS NUMBERS, DISTRIBUTION, DOCUMENT TYPES, DYNAMICS, FIELD THEORIES, INTERACTIONS, LEPTON BEAMS, LEPTON-LEPTON INTERACTIONS, LINEAR ACCELERATORS, MATHEMATICAL MODELS, MECHANICS, ORIENTATION, PARTICLE BEAMS, PARTICLE INTERACTIONS, PARTICLE MODELS, QUANTUM FIELD THEORY, UNIFIED GAUGE MODELS, UNIFIED-FIELD THEORIES
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