Polarized protons in the Cooler Synchrotron COSY encounter five imperfection and nine intrinsic depolarizing resonances during the acceleration from 300 to 3300 MeV/c. When crossing imperfection resonances vertical correction dipoles are excited in order to enhance the average vertical displacement and thereby the resonance strength to result in a complete spin flip without loss of polarization. When crossing intrinsic resonances a rapid vertical tune jump is applied to minimize polarization losses. In order to find the optimum machine parameters a novel and fast method was developed to measure the internal beam polarization as a function of the beam momentum in the vicinity of a depolarizing resonance as well as in the full acceleration ramp. Using very thin internal - and/or C-fiber targets the polarization is deduced from the left-right asymmetry of fast scaler rates. To this end the EDDA detector is used. This detector consists of two cylindrical scintillation hodoscope layers covering about 87% of 4π for pp elastic scattering. The effective analyzing power of the fast method is obtained by a special calibration procedure using a “slow but proper” EDDA-style measurement of the elastic pp scattering asymmetries. For this calibration precise analyzing power excitation functions measured by EDDA became available in time.
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1 June 2001
The fourteenth international spin physics symposium, SPIN2000
16-21 Oct 2000
Osaka (Japan)
Research Article|
June 01 2001
Polarized proton beam development at COSY with EDDA as a fast internal polarimeter
F. Hinterberger;
F. Hinterberger
ISKP, University of Bonn, Nussallee 14–16, D-53115 Bonn
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AIP Conf. Proc. 570, 731–735 (2001)
Citation
F. Hinterberger, COSY Team, EDDA Collaboration; Polarized proton beam development at COSY with EDDA as a fast internal polarimeter. AIP Conf. Proc. 1 June 2001; 570 (1): 731–735. https://doi.org/10.1063/1.1384154
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