June 2009

Journal

PRACTICAL SOLUTIONS FOR NONLINEAR ACCELERATOR LATTICE WITH STABLE NEARLY REGULAR MOTION

By:
Danilov, Viatcheslav V
Journal Name:
Physical Review Special Topics - Accelerators and Beams
Page Number:
114001
Volume:
11
Issue Number:
11
Publication Date:
June 17, 2009
View DOI Listing:
https://doi.org/10.1103/PhysRevSTAB.11.114001

Abstract

The use of nonlinear lattices with the large betaron tune spreads can increase instablity and space charge thresholds by orders of magnitude compared to typical linear accelarator lattices. Unfortunately, strong nonlinear fields create, in general, strong resonances and chaotic motion. This shrinks the dynamic aperture to impractical values, thus erasing all benefits from their use. Previously known examples of stable and regular accelerator motion with special nonlinear lenses were related to one dimensional motion or round beams. However, no solution has been realized with real 2D tranverse magnetic fields to produce stable, close to regular 2D motion with the large dynamic aperture and betatron tune spread comparable to the betatron tune itself. This paper presents possible solutions for such 2D lattices. They consist of straight sections with short linear and nonlinear lenses with transverse magnetic fields.