Accelerator Physics, P905

This course is graduate level accelerator physics, co-taught by Prof. Steve Lund and Prof Yue Hao.

Course website

The lecture notes by Yue Hao:

Lecture Notes

  1. Magnets
  2. Linear Transverse Motion and also see Fringe Effect
  3. Perturbed Linear Transverse Motion
  4. Off Momentum Orbit
  5. Longitudinal Dynamics
  6. Synchrotron Radiation
  7. Electron Storage Ring
  8. Undulator Radiation

Applications

Special Topics

Examples

FODO cell Match Dispersion for FODO
Lattice file FODO lattice matched_lattice
Command file Find_matched optics find twiss for matched_lattice

Homeworks

References:

  1. “Accelerator Physics”, By S.Y. Lee, World Scientific
  2. “Lecture notes on Classical Mechanics and Electromagnetism in Accelerator Physics”, by Gennady Stupakov
  3. “Basic Theory of Manget”, by Animesh Jain
  4. “A First- and Second-Order Matrix Theory for the Design of Beam Transport Systems and Charged Particle Spectrometers”, SLAC-75, by Karl Brown

The whole package of the lectures and the Jupyter notebook can be retrieved by:

git clone https://github.com/YueHao/AP_course_materials.git