Beam Polarization at the ILC: the Physics Impact and the Accelerator Solutions

dc.creatorAurand, B.
dc.creatorBailey, I.
dc.creatorBartels, C.
dc.creatorBrachmann, A.
dc.creatorClarke, J.
dc.creatorHartin, A.
dc.creatorHauptman, J.
dc.creatorHelebrant, C.
dc.creatorHesselbach, S.
dc.creatorKafer, D.
dc.creatorList, J.
dc.creatorLorenzon, W.
dc.creatorMarchesini, I.
dc.creatorMonig, K.
dc.creatorMoffeit, K. C.
dc.creatorMoortgat-Pick, G.
dc.creatorRiemann, S.
dc.creatorSchalicke, A.
dc.creatorSchuler, P.
dc.creatorStarovoitov, P.
dc.creatorUshakov, A.
dc.creatorVelte, U.
dc.creatorWittschen, J.
dc.creatorWoods, M.
dc.date2009-03-17
dc.date.accessioned2026-07-07T12:53:10Z
dc.date.available2026-07-07T12:53:10Z
dc.descriptionIn this contribution accelerator solutions for polarized beams and their impact on physics measurements are discussed. Focus are physics requirements for precision polarimetry near the interaction point and their realization with polarized sources. Based on the ILC baseline programme as described in the Reference Design Report (RDR), recent developments are discussed and evaluated taking into account physics runs at beam energies between 100 GeV and 250 GeV, as well as calibration runs on the Z-pole and options as the 1TeV upgrade and GigaZ.
dc.descriptionTo appear in the proceedings of International Linear Collider Workshop (LCWS08 and ILC08), Chicago, Illinois, 16-20 Nov 2008
dc.identifierhttps://arxiv.org/abs/0903.2959
dc.identifierhttp://arxiv.org/abs/0903.2959
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/223532
dc.subjectAccelerator Physics
dc.titleBeam Polarization at the ILC: the Physics Impact and the Accelerator Solutions
dc.typetext

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