Moller Scattering Polarimetry for High Energy e^+e^- Linear Colliders
arXiv:hep-ex/0006007 · doi:10.1016/S0168-9002(01)02167-2
Abstract
The general features of the Moller scattering and its use as an electron polarimeter are described and studied in view of the planned future high energy e^+e^- linear colliders. In particular the study concentrates on the TESLA collider which is envisaged to operate with longitudinal polarised beams at a centre of mass energy of the order of 0.5 TeV with a luminosity of about L = 10^34 cm^-2 sec^-1.
References in corpus (4)
Cited by in corpus (5)
- The role of polarized positrons and electrons in revealing fundamental interactions at the Linear Collider
- Electroweak radiative corrections for polarized Moller scattering at future 11 GeV JLab experiment
- Lowest order QED radiative corrections to longitudinally polarized Moller scattering
- Quadratic electroweak corrections for polarized Moller scattering
- One-loop chiral amplitudes of Moller scattering process