Accelerator Physics

Accelerator Physics
复制标题

DOI:
10.1142/11111
复制
发表时间:
2019-01
期刊:
--
影响因子:
--
通讯作者:
S Y Lee
S Y Lee
中科院分区:
其他
文献类型:
--
作者:
S Y Lee

文献摘要

被引文献

相似文献

高能加速器的研究和开发始于1911年。从那时起,取得的进展是:加速器发展的影响体现在粒子和核物理、原子和分子物理、凝聚态物理、生物学、生物医学物理、核医学、医学治疗和工业加工等领域的许多突破性发现。这本书的目的是作为一个研究生或高级本科教材在加速器物理和科学。可作为研究生加速器物理论文研究的预备教材。文本涵盖历史加速器的发展,横向电子加速器运动,同步加速器运动,介绍线性加速器,和同步辐射现象在低发射电子存储环,介绍专题,如自由电子激光和束流-束流相互作用。哈密顿动力学用于理解光束操纵、不稳定性和非线性。每个部分之后都有练习,旨在强化所讨论的概念并解决实际的加速器设计问题。
Research and development of high energy accelerators began in 1911. Since then, progresses achieved are:The impacts of the accelerator development are evidenced by the many ground-breaking discoveries in particle and nuclear physics, atomic and molecular physics, condensed matter physics, biology, biomedical physics, nuclear medicine, medical therapy, and industrial processing. This book is intended to be used as a graduate or senior undergraduate textbook in accelerator physics and science. It can be used as preparatory course material in graduate accelerator physics thesis research. The text covers historical accelerator development, transverse betatron motion, synchrotron motion, an introduction to linear accelerators, and synchrotron radiation phenomena in low emittance electron storage rings, introduction to special topics such as the free electron laser and the beam-beam interaction. Hamiltonian dynamics is used to understand beam manipulation, instability and nonlinearity. Each section is followed by exercises, which are designed to reinforce the concept discussed and to solve a realistic accelerator design problem.