Title |
Analysis of Spin Response Function at Beam Interaction Point in JLEIC |
Authors |
- V.S. Morozov, Y.S. Derbenev, F. Lin, Y. Zhangpresenter
JLab, Newport News, Virginia, USA
- Y. Filatov
MIPT, Dolgoprudniy, Moscow Region, Russia
- A.M. Kondratenko, M.A. Kondratenko
Science and Technique Laboratory Zaryad, Novosibirsk, Russia
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Abstract |
The spin response function is determined by a collid-er's magnetic lattice and allows one to account for con-tributions of perturbing fields to spin resonance strengths. The depolarizing effect of an incoming beam depends significantly on the response function value at the interaction point (IP). We present an analytic calcula-tion of the response function for protons and deuterons at the IP of Jefferson Lab Electron Ion Collider (JLEIC) over its whole momentum range. We find a good agreement of the analytic calculation with our numerical modeling results obtained using a spin tracking code, Zgoubi.
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Funding |
This material is based upon work supported by the U.S. Department of Energy, Office of Science, Office of Nuclear Physics under con-tracts DE-AC05-06OR23177 and DE-AC02-06CH11357. |
Paper |
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Conference |
IPAC2018, Vancouver, BC, Canada |
Series |
International Particle Accelerator Conference (9th) |
Proceedings |
Link to full IPAC2018 Proccedings |
Session |
MC1/8 Poster Session |
Date |
30-Apr-18 16:00–17:30 |
Main Classification |
01 Circular and Linear Colliders |
Sub Classification |
A19 Electron-Hadron Colliders |
Keywords |
resonance, collider, polarization, proton, sextupole |
Publisher |
JACoW Publishing, Geneva, Switzerland |
Editors |
Shane Koscielniak (TRIUMF, Vancouver, BC, Canada); Todd Satogata (JLab, Newport News, VA, USA); Volker RW Schaa (GSI, Darmstadt, Germany); Jana Thomson (TRIUMF, Vancouver, BC, Canada) |
ISBN |
978-3-95450-184-7 |
Published |
June 2018 |
Copyright |
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