<p><B>Particle Accelerator Physics II</B> continues the discussion of particle accelerator physics beyond the introductory <B>Particle</B><B> Accelerator Physics I</B>. Aimed at students and scientists who plan to work or are working in the field of accelerator physics. Basic principles of beam dyna
Particle Accelerator Physics: I Basic Principles and Linear Beam Dynamics II Nonlinear and Higher-Order Beam Dynamics
โ Scribed by Professor Dr. Helmut Wiedemann (auth.)
- Publisher
- Springer Berlin Heidelberg
- Year
- 2003
- Tongue
- English
- Leaves
- 952
- Series
- Advanced Texts in Physics
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Table of Contents
Front Matter....Pages I-XXXVI
Introduction....Pages 1-24
Linear Accelerators....Pages 25-52
Circular Accelerators....Pages 53-74
Charged Particles in Electromagnetic Fields....Pages 75-117
Linear Beam Dynamics....Pages 118-183
Periodic Focusing Systems....Pages 184-224
Perturbations in Beam Dynamics....Pages 225-264
Charged Particle Acceleration....Pages 265-299
Synchrotron Radiation....Pages 300-336
Particle Beam Parameters....Pages 337-369
Beam Life Time....Pages 370-383
Collective Phenomena....Pages 384-401
Beam Emittance and Lattice Design....Pages 402-418
Hamiltonian Formulation of Beam Dynamics....Pages 419-460
General Electromagnetic Fields....Pages 461-490
Dynamics of Coupled Motion....Pages 491-510
Higher-Order Perturbations....Pages 511-544
Hamiltonian Nonlinear Beam Dynamics....Pages 545-580
Charged Particle Acceleration....Pages 581-646
Synchrotron Radiation....Pages 647-686
Hamiltonian Many-Particle Systems....Pages 687-722
Particle Beam Parameters....Pages 723-742
Collective Phenomena....Pages 743-823
Insertion Device Radiation....Pages 824-852
Back Matter....Pages 853-922
โฆ Subjects
Particle Acceleration and Detection, Beam Physics; Measurement Science and Instrumentation
๐ SIMILAR VOLUMES
This volume continues the discussion of particle accelerator physics beyond the introduction in Vol I. It is specially aimed at the graduate student and scientist planning to work or working in the field of accelerator physics. Basic principles of beam dynamics already discussed in Vol. I, are expan