An Introduction to Beam Physics

An Introduction to Beam Physics
Author :
Publisher : CRC Press
Total Pages : 326
Release :
ISBN-10 : 9780750302630
ISBN-13 : 0750302631
Rating : 4/5 (30 Downloads)

Synopsis An Introduction to Beam Physics by : Martin Berz

The field of beam physics touches many areas of physics, engineering, and the sciences. In general terms, beams describe ensembles of particles with initial conditions similar enough to be treated together as a group so that the motion is a weakly nonlinear perturbation of a chosen reference particle. Particle beams are used in a variety of areas, ranging from electron microscopes, particle spectrometers, medical radiation facilities, powerful light sources, and astrophysics to large synchrotrons and storage rings such as the LHC at CERN. An Introduction to Beam Physics is based on lectures given at Michigan State University’s Department of Physics and Astronomy, the online VUBeam program, the U.S. Particle Accelerator School, the CERN Academic Training Programme, and various other venues. It is accessible to beginning graduate and upper-division undergraduate students in physics, mathematics, and engineering. The book begins with a historical overview of methods for generating and accelerating beams, highlighting important advances through the eyes of their developers using their original drawings. The book then presents concepts of linear beam optics, transfer matrices, the general equations of motion, and the main techniques used for single- and multi-pass systems. Some advanced nonlinear topics, including the computation of aberrations and a study of resonances, round out the presentation.

A Practical Introduction to Beam Physics and Particle Accelerators

A Practical Introduction to Beam Physics and Particle Accelerators
Author :
Publisher : Morgan & Claypool Publishers
Total Pages : 149
Release :
ISBN-10 : 9781643270906
ISBN-13 : 1643270907
Rating : 4/5 (06 Downloads)

Synopsis A Practical Introduction to Beam Physics and Particle Accelerators by : Santiago Bernal

This book provides a brief exposition of the principles of beam physics and particle accelerators with an emphasis on numerical examples employing readily available computer tools. However, it avoids detailed derivations, instead inviting the reader to use general high-end languages such as Mathcad and Matlab, as well as specialized particle accelerator codes (e.g. MAD, WinAgile, Elegant, and others) to explore the principles presented. This approach allows readers to readily identify relevant design parameters and their scaling. In addition, the computer input files can serve as templates that can be easily adapted to other related situations. The examples and computer exercises comprise basic lenses and deflectors, fringe fields, lattice and beam functions, synchrotron radiation, beam envelope matching, betatron resonances, and transverse and longitudinal emittance and space charge. The last chapter presents examples of two major types of particle accelerators: radio frequency linear accelerators (RF linacs) and storage rings. Lastly, the appendix gives readers a brief description of the computer tools employed and concise instructions for their installation and use in the most popular computer platforms (Windows, Macintosh and Ubuntu Linux). Hyperlinks to websites containing all relevant files are also included. An essential component of the book is its website (actually part of the author's website at the University of Maryland), which contains the files that reproduce results given in the text as well as additional material such as technical notes and movies.

An Introduction to the Physics of Intense Charged Particle Beams

An Introduction to the Physics of Intense Charged Particle Beams
Author :
Publisher : Springer
Total Pages : 352
Release :
ISBN-10 : 1468411306
ISBN-13 : 9781468411300
Rating : 4/5 (06 Downloads)

Synopsis An Introduction to the Physics of Intense Charged Particle Beams by : R. Miller

An intense charged particle beam can be characterized as an organized charged particle flow for which the effects of beam self-fields are of major importance in describing the evolution of the flow. Research employing such beams is now a rapidly growing field with important applications ranging from the development of high power sources of coherent radiation to inertial confinement fusion. Major programs have now been established at several laboratories in the United States and Great Britain, as well as in the USSR, Japan, and several Eastern and Western European nations. In addition, related research activities are being pursued at the graduate level at several universities in the US and abroad. When the author first entered this field in 1973 there was no single reference text that provided a broad survey of the important topics, yet contained sufficient detail to be of interest to the active researcher. That situation has persisted, and this book is an attempt to fill the void. As such, the text is aimed at the graduate student, or beginning researcher; however, it contains ample information to be a convenient reference source for the advanced worker.

An Introduction to Beam Physics

An Introduction to Beam Physics
Author :
Publisher : Taylor & Francis
Total Pages : 325
Release :
ISBN-10 : 9781420011821
ISBN-13 : 1420011820
Rating : 4/5 (21 Downloads)

Synopsis An Introduction to Beam Physics by : Martin Berz

The field of beam physics touches many areas of physics, engineering, and the sciences. In general terms, beams describe ensembles of particles with initial conditions similar enough to be treated together as a group so that the motion is a weakly nonlinear perturbation of a chosen reference particle. Particle beams are used in a variety of areas,

Particle Accelerator Physics I

Particle Accelerator Physics I
Author :
Publisher : Springer Science & Business Media
Total Pages : 465
Release :
ISBN-10 : 9783662038277
ISBN-13 : 3662038277
Rating : 4/5 (77 Downloads)

Synopsis Particle Accelerator Physics I by : Helmut Wiedemann

In this second edition of Particle Accelerator Physics, Vol. 1, is mainly a reprint of the first edition without significant changes in content. The bibliography has been updated to include more recent progress in the field of particle accelerators. With the help of many observant readers a number of misprints and errors could be eliminated. The author would like to express his sincere appreciation to all those who have pointed out such shortcomings and wel comes such information and any other relevant information in the future. The author would also like to express his special thanks to the editor Dr. Helmut Lotsch and his staff for editorial as well as technical advice and support which contributed greatly to the broad acceptance of this text and made a second edition of both volumes necessary. Palo Alto, California Helmut Wiedemann November 1998 VII Preface to the First Edition The purpose of this textbook is to provide a comprehensive introduction into the physics of particle accelerators and particle beam dynamics. Parti cle accelerators have become important research tools in high energy physics as well as sources of incoherent and coherent radiation from the far infra red to hard x-rays for basic and applied research. During years of teaching accelerator physics it became clear that the single most annoying obstacle to get introduced into the field is the absence of a suitable textbook.

An Introduction to the Physics of Particle Accelerators

An Introduction to the Physics of Particle Accelerators
Author :
Publisher : World Scientific
Total Pages : 391
Release :
ISBN-10 : 9789812779601
ISBN-13 : 9812779604
Rating : 4/5 (01 Downloads)

Synopsis An Introduction to the Physics of Particle Accelerators by : Mario Conte

"This book provides a concise and coherent introduction to the physics of particle accelerators, with attention being paid to the design of an accelerator for use as an experimental tool. In the second edition, new chapters on spin dynamics of polarized beams as well as instrumentation and measurements are included, with a discussion of frequency spectra and Schottky signals. The additional material also covers quadratic Lie groups and integration highlighting new techniques using Cayley transforms, detailed estimation of collider luminosities, and new problems."--BOOK JACKET.

Fundamentals of Beam Physics

Fundamentals of Beam Physics
Author :
Publisher :
Total Pages : 294
Release :
ISBN-10 : 0191711721
ISBN-13 : 9780191711725
Rating : 4/5 (21 Downloads)

Synopsis Fundamentals of Beam Physics by : Jamie Rosenzweig

This text presents beam physics using a unified approach emphasizing basic concepts and analysis methods. Beyond single particle dynamics, the proliferation of commonly used beam descriptions are surveyed and compared. Aspects of experimental techniques are introduced.

Theory and Design of Charged Particle Beams

Theory and Design of Charged Particle Beams
Author :
Publisher : John Wiley & Sons
Total Pages : 634
Release :
ISBN-10 : 9783527617630
ISBN-13 : 3527617639
Rating : 4/5 (30 Downloads)

Synopsis Theory and Design of Charged Particle Beams by : Martin Reiser

Although particle accelerators are the book's main thrust, it offers a broad synoptic description of beams which applies to a wide range of other devices such as low-energy focusing and transport systems and high-power microwave sources. Develops material from first principles, basic equations and theorems in a systematic way. Assumptions and approximations are clearly indicated. Discusses underlying physics and validity of theoretical relationships, design formulas and scaling laws. Features a significant amount of recent work including image effects and the Boltzmann line charge density profiles in bunched beams.

Molecular Beams in Physics and Chemistry

Molecular Beams in Physics and Chemistry
Author :
Publisher : Springer Nature
Total Pages : 639
Release :
ISBN-10 : 9783030639631
ISBN-13 : 3030639630
Rating : 4/5 (31 Downloads)

Synopsis Molecular Beams in Physics and Chemistry by : Bretislav Friedrich

This Open Access book gives a comprehensive account of both the history and current achievements of molecular beam research. In 1919, Otto Stern launched the revolutionary molecular beam technique. This technique made it possible to send atoms and molecules with well-defined momentum through vacuum and to measure with high accuracy the deflections they underwent when acted upon by transversal forces. These measurements revealed unforeseen quantum properties of nuclei, atoms, and molecules that became the basis for our current understanding of quantum matter. This volume shows that many key areas of modern physics and chemistry owe their beginnings to the seminal molecular beam work of Otto Stern and his school. Written by internationally recognized experts, the contributions in this volume will help experienced researchers and incoming graduate students alike to keep abreast of current developments in molecular beam research as well as to appreciate the history and evolution of this powerful method and the knowledge it reveals.

Introduction to Beam Dynamics in High-Energy Electron Storage Rings

Introduction to Beam Dynamics in High-Energy Electron Storage Rings
Author :
Publisher : Morgan & Claypool Publishers
Total Pages : 193
Release :
ISBN-10 : 9781681749884
ISBN-13 : 1681749882
Rating : 4/5 (84 Downloads)

Synopsis Introduction to Beam Dynamics in High-Energy Electron Storage Rings by : Andrzej Wolski

Electron storage rings play a crucial role in many areas of modern scientific research. In light sources, they provide intense beams of x-rays that can be used to understand the structure and behavior of materials at the atomic scale, with applications to medicine, the life sciences, condensed matter physics, engineering, and technology. In particle colliders, electron storage rings allow experiments that probe the laws of nature at the most fundamental level. Understanding and controlling the behavior of the beams of particles in storage rings is essential for the design, construction, and operation of light sources and colliders aimed at reaching increasingly demanding performance specifications. Introduction to Beam Dynamics in High-Energy Electron Storage Rings describes the physics of particle behavior in these machines. Starting with an outline of the history, uses, and structure of electron storage rings, the book develops the foundations of beam dynamics, covering particle motion in the components used to guide and focus the beams, the effects of synchrotron radiation, and the impact of interactions between the particles in the beams. The aim is to emphasize the physics behind key phenomena, keeping mathematical derivations to a minimum: numerous references are provided for those interested in learning more. The text includes discussion of issues relevant to machine design and operation and concludes with a brief discussion of some more advanced topics, relevant in some special situations, and a glimpse of current research aiming to develop the "ultimate" storage rings.