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Numerical Calculation of the Ion Polarization in MEIC.

Numerical Calculation of the Ion Polarization in MEIC.
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Release: 2015
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Ion polarization in the Medium-energy Electron-Ion Collider (MEIC) is controlled by means of universal 3D spin rotators designed on the basis of "weak" solenoids. We use numerical calculations to demonstrate that the 3D rotators have negligible effect on the orbital properties of the ring. We present calculations of the polarization dynamics along the collider's orbit for both longitudinal and transverse polarization directions at a beam interaction point. We calculate the degree of depolarization due to the longitudinal and transverse beam emittances in case when the zero-integer spin resonance is compensated.


Ion Polarization in the MEIC Figure-8 Ion Collider Ring

Ion Polarization in the MEIC Figure-8 Ion Collider Ring
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Release: 2012
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The nuclear physics program envisaged at the Medium-energy Electron-Ion Collider (MEIC) currently being developed at the Jefferson Lab calls for collisions of 3-11 GeV/c longitudinally polarized electrons and 20-100 GeV/c, in equivalent proton momentum, longitudinally/ transversely polarized protons/ deuterons/ light ions. We present a scheme that provides the required ion polarization arrangement in the MEIC's ion collider ring.


Polarization Preservation and Control in a Figure-8 Ring

Polarization Preservation and Control in a Figure-8 Ring
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Total Pages: 7
Release: 2016
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We present a complete scheme for managing the polarization of ion beams in Jefferson Lab's proposed Medium-energy Electron-Ion Collider (MEIC). It provides preservation of the ion polarization during all stages of beam acceleration and polarization control in the collider's experimental straights. We discuss characteristic features of the spin motion in accelerators with Siberian snakes and in accelerators of figure-8 shape. We propose 3D spin rotators for polarization control in the MEIC ion collider ring. We provide polarization calculations in the collider with the 3D rotator for deuteron and proton beams. The main polarization control features of the figure-8 design are summarized.


Baseline Scheme for Polarization Preservation and Control in the MEIC Ion Complex

Baseline Scheme for Polarization Preservation and Control in the MEIC Ion Complex
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Release: 2015
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The scheme for preservation and control of the ion polarization in the Medium-energy Electron-Ion Collider (MEIC) has been under active development in recent years. The figure-8 configuration of the ion rings provides a unique capability to control the polarization of any ion species including deuterons by means of "weak" solenoids rotating the particle spins by small angles. Insertion of "weak" solenoids into the magnetic lattices of the booster and collider rings solves the problem of polarization preservation during acceleration of the ion beam. Universal 3D spin rotators designed on the basis of "weak" solenoids allow one to obtain any polarization orientation at an interaction point of MEIC. This paper presents the baseline scheme for polarization preservation and control in the MEIC ion complex.


ERDA Energy Research Abstracts

ERDA Energy Research Abstracts
Author: United States. Energy Research and Development Administration
Publisher:
Total Pages: 900
Release: 1977
Genre:
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Nuclear Science Abstracts

Nuclear Science Abstracts
Author:
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Total Pages: 964
Release: 1976
Genre: Nuclear energy
ISBN:

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Optics Letters

Optics Letters
Author:
Publisher:
Total Pages: 476
Release: 2008
Genre: Optics
ISBN:

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Energy Research Abstracts

Energy Research Abstracts
Author:
Publisher:
Total Pages: 438
Release: 1994-05
Genre: Power resources
ISBN:

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High Energy Physics Index

High Energy Physics Index
Author:
Publisher:
Total Pages: 606
Release: 1994
Genre: Particles (Nuclear physics)
ISBN:

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Optics and Spectroscopy

Optics and Spectroscopy
Author:
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Total Pages: 950
Release: 1990
Genre: Optics
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