Iron Dominated Electromagnets

Iron Dominated Electromagnets
Author :
Publisher : World Scientific
Total Pages : 356
Release :
ISBN-10 : 9789812563279
ISBN-13 : 981256327X
Rating : 4/5 (79 Downloads)

Synopsis Iron Dominated Electromagnets by : Jack T. Tanabe

This unique book, written by a specialist in the field, is devoted to the design of low and medium field electromagnets whose field level and quality (uniformity) are dominated by the pole shape and saturation characteristics of the iron yoke.

Iron Dominated Electromagnets: Design, Fabrication, Assembly And Measurements

Iron Dominated Electromagnets: Design, Fabrication, Assembly And Measurements
Author :
Publisher : World Scientific Publishing Company
Total Pages : 355
Release :
ISBN-10 : 9789813101982
ISBN-13 : 9813101989
Rating : 4/5 (82 Downloads)

Synopsis Iron Dominated Electromagnets: Design, Fabrication, Assembly And Measurements by : Jack T Tanabe

This unique book, written by one of the world's foremost specialists in the field, is devoted to the design of low and medium field electromagnets whose field level and quality (uniformity) are dominated by the pole shape and saturation characteristics of the iron yoke.The wide scope covers material ranging from the physical requirements for typical high performance accelerators, through the mathematical relationships which describe the shape of two-dimensional magnetic fields, to the mechanical fabrication, assembly, installation, and alignment of magnets in a typical accelerator lattice. In addition, stored energy concepts are used to develop magnetic force relationships and expressions for magnets with time varying fields.The material in the book is derived from lecture notes used in a course at the Lawrence Livermore National Laboratory and subsequently expanded for the U.S. Particle Accelerator School, making this text an invaluable reference for students planning to enter the field of high energy physics.Mathematical relationships tying together magnet design and measurement theory are derived from first principles, and chapters are included that describe mechanical design, fabrication, installation, and alignment. Some fabrication and assembly practices are reviewed to ensure personnel and equipment safety and operational reliability of electromagnets and their power supply systems. This additional coverage makes the book an important resource for those already in the particle accelerator business as well as those requiring the design and fabrication of low and medium field level magnets for charged particle beam transport in ion implantation and medical applications.

Applied Superconductivity

Applied Superconductivity
Author :
Publisher : John Wiley & Sons
Total Pages : 1334
Release :
ISBN-10 : 9783527412099
ISBN-13 : 3527412093
Rating : 4/5 (99 Downloads)

Synopsis Applied Superconductivity by : Paul Seidel

This wide-ranging presentation of applied superconductivity, from fundamentals and materials right up to the details of many applications, is an essential reference for physicists and engineers in academic research as well as in industry. Readers looking for a comprehensive overview on basic effects related to superconductivity and superconducting materials will expand their knowledge and understanding of both low and high Tc superconductors with respect to their application. Technology, preparation and characterization are covered for bulk, single crystals, thins fi lms as well as electronic devices, wires and tapes. The main benefit of this work lies in its broad coverage of significant applications in magnets, power engineering, electronics, sensors and quantum metrology. The reader will find information on superconducting magnets for diverse applications like particle physics, fusion research, medicine, and biomagnetism as well as materials processing. SQUIDs and their usage in medicine or geophysics are thoroughly covered, as are superconducting radiation and particle detectors, aspects on superconductor digital electronics, leading readers to quantum computing and new devices.

Lectures On Accelerator Physics

Lectures On Accelerator Physics
Author :
Publisher : World Scientific
Total Pages : 915
Release :
ISBN-10 : 9789811226755
ISBN-13 : 981122675X
Rating : 4/5 (55 Downloads)

Synopsis Lectures On Accelerator Physics by : Alexander Wu Chao

This book is written for students who ever wondered about the mysterious and fascinating world of particle accelerators. What exciting physics and technologies lie within? What clever and ingenious ideas were applied in their seven decades of evolution? What promises still lay ahead in the future?Accelerators have been driving research and industrial advances for decades. This textbook illustrates the physical principles behind these incredible machines, often with intuitive pictures and simple mathematical models. Pure formalisms are avoided as much as possible. It is hoped that the readers would enjoy the fascinating physics behind these state-of-the-art devices.The style is informal and aimed for a graduate level without prerequisite of prior knowledge in accelerators. To serve as a textbook, references are listed only on the more established original literature and review articles instead of the constantly changing research frontiers.

Principles of Magnetostatics

Principles of Magnetostatics
Author :
Publisher : Cambridge University Press
Total Pages : 315
Release :
ISBN-10 : 9781009291149
ISBN-13 : 1009291149
Rating : 4/5 (49 Downloads)

Synopsis Principles of Magnetostatics by : Richard C. Fernow

This 2016 book, now OA, explains the mathematical theory behind the forces and fields resulting from the steady electrical currents.

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.

Field Computation for Accelerator Magnets

Field Computation for Accelerator Magnets
Author :
Publisher : John Wiley & Sons
Total Pages : 778
Release :
ISBN-10 : 9783527635474
ISBN-13 : 3527635475
Rating : 4/5 (74 Downloads)

Synopsis Field Computation for Accelerator Magnets by : Stephan Russenschuck

Written by a leading expert on the electromagnetic design and engineering of superconducting accelerator magnets, this book offers the most comprehensive treatment of the subject to date. In concise and easy-to-read style, the author lays out both the mathematical basis for analytical and numerical field computation and their application to magnet design and manufacture. Of special interest is the presentation of a software-based design process that has been applied to the entire production cycle of accelerator magnets from the concept phase to field optimization, production follow-up, and hardware commissioning. Included topics: Technological challenges for the Large Hadron Collider at CERN Algebraic structures and vector fields Classical vector analysis Foundations of analytical field computation Fields and Potentials of line currents Harmonic fields The conceptual design of iron- and coil-dominated magnets Solenoids Complex analysis methods for magnet design Elementary beam optics and magnet polarities Numerical field calculation using finite- and boundary-elements Mesh generation Time transient effects in superconducting magnets, including superconductor magnetization and cable eddy-currents Quench simulation and magnet protection Mathematical optimization techniques using genetic and deterministic algorithms Practical experience from the electromagnetic design of the LHC magnets illustrates the analytical and numerical concepts, emphasizing the relevance of the presented methods to a great many applications in electrical engineering. The result is an indispensable guide for high-energy physicists, electrical engineers, materials scientists, applied mathematicians, and systems engineers.

Numerical Approximation of the Magnetoquasistatic Model with Uncertainties

Numerical Approximation of the Magnetoquasistatic Model with Uncertainties
Author :
Publisher : Springer
Total Pages : 128
Release :
ISBN-10 : 9783319412948
ISBN-13 : 3319412949
Rating : 4/5 (48 Downloads)

Synopsis Numerical Approximation of the Magnetoquasistatic Model with Uncertainties by : Ulrich Römer

This book presents a comprehensive mathematical approach for solving stochastic magnetic field problems. It discusses variability in material properties and geometry, with an emphasis on the preservation of structural physical and mathematical properties. It especially addresses uncertainties in the computer simulation of magnetic fields originating from the manufacturing process. Uncertainties are quantified by approximating a stochastic reformulation of the governing partial differential equation, demonstrating how statistics of physical quantities of interest, such as Fourier harmonics in accelerator magnets, can be used to achieve robust designs. The book covers a number of key methods and results such as: a stochastic model of the geometry and material properties of magnetic devices based on measurement data; a detailed description of numerical algorithms based on sensitivities or on a higher-order collocation; an analysis of convergence and efficiency; and the application of the developed model and algorithms to uncertainty quantification in the complex magnet systems used in particle accelerators.

Particle Accelerator Physics

Particle Accelerator Physics
Author :
Publisher : Springer
Total Pages : 1029
Release :
ISBN-10 : 9783319183176
ISBN-13 : 3319183176
Rating : 4/5 (76 Downloads)

Synopsis Particle Accelerator Physics by : Helmut Wiedemann

This book by Helmut Wiedemann is a well-established, classic text, providing an in-depth and comprehensive introduction to the field of high-energy particle acceleration and beam dynamics. The present 4th edition has been significantly revised, updated and expanded. The newly conceived Part I is an elementary introduction to the subject matter for undergraduate students. Part II gathers the basic tools in preparation of a more advanced treatment, summarizing the essentials of electrostatics and electrodynamics as well as of particle dynamics in electromagnetic fields. Part III is an extensive primer in beam dynamics, followed, in Part IV, by an introduction and description of the main beam parameters and including a new chapter on beam emittance and lattice design. Part V is devoted to the treatment of perturbations in beam dynamics. Part VI then discusses the details of charged particle acceleration. Parts VII and VIII introduce the more advanced topics of coupled beam dynamics and describe very intense beams – a number of additional beam instabilities are introduced and reviewed in this new edition. Part IX is an exhaustive treatment of radiation from accelerated charges and introduces important sources of coherent radiation such as synchrotrons and free-electron lasers. The appendices at the end of the book gather useful mathematical and physical formulae, parameters and units. Solutions to many end-of-chapter problems are given. This textbook is suitable for an intensive two-semester course starting at the senior undergraduate level.

Advances in Imaging and Electron Physics

Advances in Imaging and Electron Physics
Author :
Publisher : Academic Press
Total Pages : 406
Release :
ISBN-10 : 9780080912165
ISBN-13 : 0080912168
Rating : 4/5 (65 Downloads)

Synopsis Advances in Imaging and Electron Physics by :

Advances in Imaging and Electron Physics merges two long-running serials--Advances in Electronics and Electron Physics and Advances in Optical and Electron Microscopy. This series features extended articles on the physics of electron devices (especially semiconductor devices), particle optics at high and low energies, microlithography, image science and digital image processing, electromagnetic wave propagation, electron microscopy, and the computing methods used in all these domains. - Contributions from leading international scholars and industry experts - Discusses hot topic areas and presents current and future research trends - Invaluable reference and guide for physicists, engineers and mathematicians