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Magnetic Fringe Field and Interference in High Intensity Accelerators
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Authors: J. G. Wang (Spallation Neutron Source, Oak Ridge National Laboratory, Oak Ridge, TN USA) 
Book Description:
This monograph has evolved from the author's research work on the Spallation Neutron Source (SNS) at Oak Ridge National Laboratory (ORNL). The SNS is the world's most powerful accelerator-driven, short-pulse neutron scattering facility for scientific research and industrial development. It consists of a powerful proton accelerator, a liquid mercury target, and neutron scattering instruments. The SNS currently holds the world record for proton beam power for spallation sources, 860 kW, and is expected to achieve the design power of 1.4 MW by the summer of 2010. The SNS accelerator complex consists of a 2.5 MeV H{ beam injector that includes a high-brightness H{ ion source and a radio frequency quadrupole, a high-power linear accelerator (linac) of up to 1 GeV energy with a pulse length of 1 ms at 60 Hz, and an accumulator ring to compress the long linac pulses into short ones of about 700 ns with 1.5E14 protons per pulse.

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Table of Contents:
INTRODUCTION pp.1-8

1.1 Background
1.2 Research Issues
1.3 Synopsis
References

2. FUNDAMENTALS OF ACCELERATOR MAGNETS pp.9-28
2.1 Magnetostatic Fields
2.2 Two-Dimensional Fields
2.3 Particle Motion
2.4 Dipole Magnets
2.5 Quadrupole Magnets
2.6 Magnet Measurements
References

3. MAGNET MODELING pp.29-43
3.1 Overview of Simulation Codes
3.2 OPERA/TOSCA
3.3 A Modeling Example
References

4. THREE-DIMENSIONAL FIELD MULTIPOLE EXPANSION pp.43-64
4.1 Review of Theory
4.2 Expansion Techniques
4.3 On-Axis Gradients
4.4 A 5th-Order Representation
4.5 Higher-Order Effects
References

5. PARTICLE OPTICS IN A SINGLE QUAD pp.65-94
5.1 Simulation Model of 30Q58 and Field Distributions
5.2 Particle Trajectories and Transfer Matrices
5.3 Three-Dimensional Mulipole Expansion and Linear Focusing Function
5.4 Form Factor Theory on Magnetic Fringe Fields
5.5 Linear Transfer Matrices from the Trajectory Equations
5.6 Lens Parameters and Hard Edge Models
5.7 Third-Order Aberrations
5.8 Particle Optics in 30Q44
References

6 MAGNETIC INTERFERENCE BETWEEN TWO MAGNETS pp.95-104
6.1 Change in Linear Focusing Function
6.2 Magnetic Interference as a First-Order Perturbation
6.3 Hard Edge Models for a Perturbed Quad
References

7. PARTICLE OPTICS IN A QUAD DOUBLET ASSEMBLY pp.105-120
7.1 Two-Dimensional Field Parameters
7.2 Magnetic Fringe and Interference
7.3 Linear Transfer Matrices and Hard Edge Models
7.4 Third-Order Aberrations
7.5 Verification of Particle Trajectories
References

8. PARTICLE TRACKING IN BEAM LINES pp.121-160
8.1 SNS Ring Injection and Waste Beam Losses
8.2 Injection Constraints
8.2.1 Closed Orbit Bump and Good Injection
8.2.2 Transport of Waste Beams through IDSM
8.3 Three-Dimensional Modeling of Injection Waste Beam Dump Line
8.3.1 Simulation Models
8.3.2 Magnets and Fields on Beam Line
8.3.3 Initial Conditions of Test Particles
8.4 Three-Dimensional Particle Trajectories through IDSM
8.5 Particle Optics through Quadrupole Magnet to Dump
8.6 Remedies
8.6.1 H{-Proton Particle Losses in the Y-Direction in IDSM
8.6.2 H0-Proton Particle Losses in the X-Direction in IDSM
8.6.3 Modification of a Spare IDSM
8.6.4 Waste Beam Losses Downstream after Quadrupole Magnet
8.7 Experimental Verifications
References

9. SNS RING EXTRACTION LAMBERTSON SEPTUM MAGNET pp.161-192
9.1 Beam Profile Distortion due to Strong Skew Quad Term in ELS
9.2 Three-Dimensional Simulation Model
9.3 General Performance of ELS
9.4 Computation of Skew Quad Term
9.4.1 Patch Rotation Method
9.4.2 Surface Field Analysis
9.4.3 Dipole Fields on Grids
9.4.4 Comparison with Measurements
9.5 Origin of the Large Skew Quad Term
9.5.1 Effect of Longitudinal Shims on Skew Quad Term
9.5.2 Effect of Magnet Ends on Skew Quad Term
9.6 Minimization of Integrated Skew Quad Term
9.7 Extracted Beam Profile through ELS
9.8 Linear Transfer Matrices
9.9 ELS Interference with Adjacent Quad
9.9.1 Effect of the ELS on 30Q44
9.9.2 Effect of 30Q44 on the ELS
9.10 Summary
References

INDEX pp.193-196

   Binding: Softcover
   Pub. Date: 2010
   Pages: pp.196
   ISBN: 978-1-60876-946-9
   Status: AV
  
Status Code Description
AN Announcing
FM Formatting
PP Page Proofs
FP Final Production
EP Editorial Production
PR At Prepress
AP At Press
AV Available
  
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Magnetic Fringe Field and Interference in High Intensity Accelerators