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@BOOK{Ziemann:644531,
author = {Ziemann, Volker},
title = {{H}ands-on accelerator physics using {MATLAB} ({R});
{S}econd edition},
address = {Boca Raton},
publisher = {CRC Press},
reportid = {PUBDB-2025-00875-1},
isbn = {9781003463283},
pages = {xvii, 398 pages : diagrams, illustrations},
year = {2025},
abstract = {Hands-On Accelerator Physics Using MATLAB®, Second
Edition, provides a broad introduction into the physics and
the technology of particle accelerators from synchrotron
light sources to high-energy colliders. It covers the design
of beam optics, magnets, and radio-frequency systems,
followed by a discussion of beam instrumentation and
correction algorithms. Later chapters deal with the
interaction of beams with targets, the emission of
synchrotron radiation, and intensity limitations. Chapters
discussing running and future accelerators round up the
presentation. Theoretical concepts and the design of key
components are explained with the help of MATLAB code.
Practical topics, such as beam size measurements, magnet
construction and measurements, and radio-frequency
measurements are explored in student labs that do not
require access to an accelerator. This unique approach
provides a look at what goes on "under the hood" inside
modern accelerators and presents readers with the tools to
perform their independent investigations on the computer or
in student labs. This book will be of interest to graduate
students, post-graduate researchers studying accelerator
physics, as well as engineers entering the field. The second
edition features a new chapter on future accelerators and
several new sections on polarization, neutrino beams,
testing of superconducting cavities, and matching in
longitudinal phase space, among others. The MATLAB code was
updated to be consistent with the recent release of R2024a.
All code is available from the book’s GitHub site at
https://github.com/volkziem/HandsOnAccelerators2nd.},
keywords = {Particle acceleration (DE-H253)},
ddc = {539.720285},
typ = {PUB:(DE-HGF)3},
doi = {10.1201/9781003463283},
url = {https://bib-pubdb1.desy.de/record/644531},
}