Introduction to Non-linear Longitudinal Beam Dynamics
Heiko Damerau (CERN)

TL;DR
This paper introduces the fundamental concepts of non-linear longitudinal beam dynamics in accelerators, focusing on the equations of motion, RF potentials, and techniques for beam control and stability enhancement.
Contribution
It provides a comprehensive introduction to non-linear longitudinal beam dynamics, including derivations and practical applications like bunch length control and multi-harmonic RF systems.
Findings
Modeling of synchrotron frequency distribution using non-linearity
Demonstration of longitudinal beam manipulations with RF systems
Improvement of beam stability with multi-harmonic RF techniques
Abstract
The interaction of a charged particle beam with radio-frequency (RF) systems in most linear or circular accelerators is an non-linear process. The large longitudinal electric fields for acceleration and longitudinal beam manipulations can only be generated thanks to the resonant build-up of the field in a high quality oscillator, the RF cavity, driven by a sinusoidal and hence inherently non-linear excitation. The course gives an introduction to linear and non-linear longitudinal beam dynamics, deriving the equations of motion, as well as the RF potential and the Hamiltonian of the longitudinal beam dynamics. Profiting from the non-linear dynamics, longitudinal beam manipulations to control bunch length, distance with multiple RF systems are shown as examples. Additionally, the distribution of the synchrotron frequencies of the particles in a bunch can be modelled thanks to the…
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Taxonomy
TopicsParticle accelerators and beam dynamics · Particle Accelerators and Free-Electron Lasers · Gyrotron and Vacuum Electronics Research
