Measuring the Polarization of a Rapidly Precessing Deuteron Beam
Z. Bagdasarian, S. Bertelli, D. Chiladze, G. Ciullo, J. Dietrich, S., Dymov, D. Eversmann, G. Fanourakis, M. Gaisser, R. Gebel, B. Gou, G., Guidoboni, V. Hejny, A. Kacharava, V. Kamerdzhiev, A. Lehrach, P. Lenisa, B., Lorentz, L. Magallanes, R. Maier, D. Mchedlishvili

TL;DR
This paper presents a time-marking system for measuring the in-plane polarization of a high-energy deuteron beam in a storage ring, enabling detailed polarization analysis crucial for EDM experiments.
Contribution
It introduces a novel measurement method combining time-resolved polarimetry with bias correction to accurately determine horizontal polarization in a circulating deuteron beam.
Findings
Successful measurement of horizontal polarization using the new system
Identification of polarization loss mechanisms related to emittance
Feasibility of extending polarization lifetime for EDM searches
Abstract
This paper describes a time-marking system that enables a measurement of the in-plane (horizontal) polarization of a 0.97-GeV/c deuteron beam circulating in the Cooler Synchrotron (COSY) at the Forschungszentrum J\"ulich. The clock time of each polarimeter event is used to unfold the 120-kHz spin precession and assign events to bins according to the direction of the horizontal polarization. After accumulation for one or more seconds, the down-up scattering asymmetry can be calculated for each direction and matched to a sinusoidal function whose magnitude is proportional to the horizontal polarization. This requires prior knowledge of the spin tune or polarization precession rate. An initial estimate is refined by re-sorting the events as the spin tune is adjusted across a narrow range and searching for the maximum polarization magnitude. The result is biased toward polarization values…
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