Stephan Russenschuck: Field Simulation for Accelerator Magnets, Gebunden
Field Simulation for Accelerator Magnets
Buch
- Volume 1: Theory of Fields and Magnetic Measurements / Volume 2: Methods for Design and Optimization
Artikel noch nicht erschienen, voraussichtlicher Liefertermin ist der 23.4.2025.
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Sie können den Titel schon jetzt bestellen. Versand an Sie erfolgt gleich nach Verfügbarkeit.
EUR 397,80*
- Verlag:
- Wiley-VCH GmbH, 04/2025
- Einband:
- Gebunden
- Sprache:
- Englisch
- ISBN-13:
- 9783527414178
- Artikelnummer:
- 11943444
- Umfang:
- 1136 Seiten
- Erscheinungstermin:
- 23.4.2025
- Hinweis
-
Achtung: Artikel ist nicht in deutscher Sprache!
Klappentext
A comprehensive reference to the theory and practice of accelerator-magnet design and measurementParticle accelerators have many fundamental and applied research applications in physics, materials science, chemistry, and life science. To accelerate electrons or hadrons to the required energy, magnets of highly uniform fields are needed, whose design and optimization are some of the most critical aspects of accelerator construction.
Field Simulation for Accelerator Magnets is a comprehensive two-volume reference work on the electromagnetic design of iron- and coil-dominated accelerator magnets and methods of magnetic-field measurements. It provides project engineers and beam physicists with the necessary mathematical foundations for their work.
Students of electrical engineering and physics will likewise find much value in these volumes, as the challenges to be met for field quality, electrical integrity, and robustness of accelerator magnets require an in-depth knowledge of electromagnetism. Accelerator-magnet design provides an excellent opportunity to learn mathematical methods and numerical techniques that have wide-ranging applications in industry and science.
Readers of the two volumes of this work will find:
Authorship by the leading expert on magnetic fields of accelerator magnets
Detailed discussion of topics such as vector algebra and analysis, network theory, analytical and numerical field computation, magnetic measurements, elementary beam optics, and many more
Application of mathematical optimization techniques, multiphysics simulation, and model-based systems engineering