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Course: Accelerator Physics and Synchrotr. Rad.

Department/Abbreviation: SLO/FUSZ

Year: 2020

Guarantee: 'Mgr. Jiří Kvita, Ph.D.'

Annotation: The aim is to introduce students to working principles of particle accelerators.

Course review:
- development and types of accelerators - synchrotron radiation - linear optics of synchrotron (particle movement in B field, magnet types, transport matrix, beta function and betatron oscilations, evolution of beta function, transport matrix and beta function, periodic conditions, Hill's equation and Floquet transformation, tune and optical resonances, magnet corrections - chromaticity, sextupoles, local "bumps/kicks") - beam sources - injection - principles of accelerating systems (waveguides, resonance cavities, klystron and klystron modulator)