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Locking the Spin Precession in a Storage Ring

Hempelmann, N. (author)
Hejny, V. (author)
Pretz, J. (author)
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Stephenson, E. (author)
Augustyniak, W. (author)
Bagdasarian, Z. (author)
Bai, M. (author)
Barion, L. (author)
Berz, M. (author)
Chekmenev, S. (author)
Ciullo, G. (author)
Dymov, S. (author)
Etzkorn, F. -J (author)
Eversmann, D. (author)
Gaisser, M. (author)
Gebel, R. (author)
Grigoryev, K. (author)
Grzonka, D. (author)
Guidoboni, G. (author)
Hanraths, T. (author)
Heberling, D. (author)
Hetzel, J. (author)
Hinder, F. (author)
Kacharava, A. (author)
Kamerdzhiev, V. (author)
Keshelashvili, I. (author)
Koop, I. (author)
Kulikov, A. (author)
Lehrach, A. (author)
Lenisa, P. (author)
Lomidze, N. (author)
Lorentz, B. (author)
Maanen, P. (author)
Macharashvili, G. (author)
Magiera, A. (author)
Mchedlishvili, D. (author)
Mey, S. (author)
Mueller, F. (author)
Nass, A. (author)
Nikolaev, N. N. (author)
Pesce, A. (author)
Prasuhn, D. (author)
Rathmann, F. (author)
Rosenthal, M. (author)
Saleev, A. (author)
Schmidt, V. (author)
Semertzidis, Y. (author)
Shmakova, V. (author)
Silenko, A. (author)
Slim, J. (author)
Soltner, H. (author)
Stahl, A. (author)
Stassen, R. (author)
Stockhorst, H. (author)
Stroeher, H. (author)
Tabidze, M. (author)
Tagliente, G. (author)
Talman, R. (author)
Thörngren Engblom, Pia (author)
KTH,Kärnfysik
Trinkel, F. (author)
Uzikov, Yu. (author)
Valdau, Yu. (author)
Valetov, E. (author)
Vassiliev, A. (author)
Weidemann, C. (author)
Wronska, A. (author)
Wuestner, P. (author)
Zupranski, P. (author)
Zurek, M. (author)
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 (creator_code:org_t)
American Physical Society, 2017
2017
English.
In: Physical Review Letters. - : American Physical Society. - 0031-9007 .- 1079-7114. ; 119:1
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • This Letter reports the successful use of feedback from a spin polarization measurement to the revolution frequency of a 0.97 GeV= c bunched and polarized deuteron beam in the Cooler Synchrotron (COSY) storage ring in order to control both the precession rate (approximate to 121 kHz) and the phase of the horizontal polarization component. Real time synchronization with a radio frequency (rf) solenoid made possible the rotation of the polarization out of the horizontal plane, yielding a demonstration of the feedback method to manipulate the polarization. In particular, the rotation rate shows a sinusoidal function of the horizontal polarization phase (relative to the rf solenoid), which was controlled to within a 1 standard deviation range of sigma= 0.21 rad. The minimum possible adjustment was 3.7 mHz out of a revolution frequency of 753 kHz, which changes the precession rate by 26 mrad/s. Such a capability meets a requirement for the use of storage rings to look for an intrinsic electric dipole moment of charged particles.

Subject headings

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Publication and Content Type

ref (subject category)
art (subject category)

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