2004Unpublished venueOpen access

Wigglers and single-particle dynamics in the NLC damping rings

Marco Venturini, A. Wolski, Alex J. Dragt

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Abstract

Wiggler insertions are expected to occupy a significant portion of the lattice of the Next Linear Collider (NLC) main damping rings (MDR) and have a noticeable impact on the single-particle beam dynamics. Starting from a realistic 3D representation of the magnetic fields we calculate the transfer maps for the wigglers, accounting for linear and nonlinear effects, and we study the beam dynamics with particular attention paid to the dynamic aperture (DA). A DA reduction is observed but appears to remain within acceptable limits.

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Wiggler insertions are expected to occupy a significant portion of the lattice of the Next Linear Collider (NLC) main damping rings (MDR) and have a noticeable impact on the single-particle beam dynamics. Starting from a realistic 3D representation of the magnetic fields we calculate the transfer maps for the wigglers, accounting for linear and nonlinear effects, and we study the beam dynamics with particular attention paid to the dynamic aperture (DA). A DA reduction is observed but appears to remain within acceptable limits.

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Available abstract

Wiggler insertions are expected to occupy a significant portion of the lattice of the Next Linear Collider (NLC) main damping rings (MDR) and have a noticeable impact on the single-particle beam dynamics. Starting from a realistic 3D representation of the magnetic fields we calculate the transfer maps for the wigglers, accounting for linear and nonlinear effects, and we study the beam dynamics with particular attention paid to the dynamic aperture (DA). A DA reduction is observed but appears to remain within acceptable limits.

Key concepts: Wiggler, Physics, Dynamic aperture, Particle dynamics, Particle accelerator, Beam (structure), Dynamics (music), Particle beam

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