Polarimeters for the SPASCHARM Experiment
Author(s) -
P. A. Semenov,
A. A. Bogdanov,
S. Bukreeva,
M Chetvertkov,
V A Chetvertkova,
V. I. Garkusha,
A.P. Meshchanin,
В. В. Мочалов,
S. B. Nurushev,
M B Nurusheva,
M. F. Runtso,
A. Ridiger,
V. L. Rykov,
S. Ryzhikov,
M. Strikhanov,
A. N. Vasiliev,
V.N. Zapolsky
Publication year - 2016
Publication title -
international journal of modern physics conference series
Language(s) - English
Resource type - Journals
ISSN - 2010-1945
DOI - 10.1142/s2010194516600867
Subject(s) - physics , polarization (electrochemistry) , radial polarization , beam (structure) , nuclear physics , antiproton , detector , proton , optics , laser beam quality , chemistry , laser beams , laser
A beam channel of polarized protons and antiprotons produced from decays of [Formula: see text]- and anti-[Formula: see text]-hyperons for the SPASCHARM experiment is to be built at IHEP U-70 accelerator in Protvino, Russia. The methods for tagging and measuring polarization of the beam (anti)protons are discussed in this report. The fast on-line beam tagging exploits the correlations between polarization and kinematics of (anti)protons originated from (anti)[Formula: see text]-decays. In the intermediate focus of primary target, decay (anti)protons of different transverse polarizations are spatially dispersed transversely with respect to the beam axis. The tagging system, consisting of fast beam detectors with good spatial resolution, measures the momentum and trajectory of each beam particle, including its position at the intermediate focus, thus allowing instant (on-line) assignment of the transverse polarization value to each (anti)proton. This system is also extremely useful for the beam channel tuning. While being fast and convenient, the polarization tagging fully relies on computing of particle transportation in the beam channel. In order to verify the real beam polarization and operating of the tagging system and beam channel, the independent absolute beam polarimetry is to be used. It is based on measuring the spin asymmetries in elastic scattering of beam (anti)protons in Coulomb-Nuclear Interference (CNI) and diffractive kinematic regions. It is estimated that less than one week of data taking would allow measuring an absolute beam polarization at the statistical accuracy of [Formula: see text]4–5%.
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