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RF Linear Accelerators (Wiley Series in Beam Physics and Accelerator Technology) PDF

397 Pages·1998·0.34 MB·English
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WllEY SERIES IN BEAM PHYSICS AND ACCELERATOR TECHNOLOGY Principles of RF Linear Accelerators I'll"%1 Wl lEY SERIES IN BEAM PHYSICS AND 4. ACCELERATOR TECHNOLOGY , Series Editor MEL MONTH CHAO PHYSICS OF COLLECTIVE BEAM INSTABILITIES IN HlGH ENERGY ACCELERATORS EDWARDS AND SYPHERS AN INTRODUCTION TO THE PHYSICS OF HlGH ENERGY ACCELERATORS INTERMEDIATE CLASSICAL DYNAMICS WITH APPLICATIONS TO BEAM PHYSICS THEORY AND DESIGN OF CHARGED PARTICLE BEAMS PADAMSEE, KNOBLOCH, RF SUPERCONDUCTIVITY FOR AND HAYS ACCELERATORS WANGLER PRINCIPLES OF RF LINEAR ACCELERATORS Principles of RF Linear Accelerators THOMAS P. WANGLER Los Alamos Notional laboratory Los Alamos, New Mexico A wiley-Interscience Publication JOHN WllEY & SONS, INC. New York / Chichester / Weinheim / Brisbane / Toronto / Singapore This book is printed on acid-free paper. @ Copyright 0 1998 by John Wiley & Sons, Inc. All right reserved. Published simultaneously in Canada. No part of this publication may be reproduced, stored in a retrieval system or transmitted in any form or by any means, electronic, mechanical, photocopying, recording, scanning or otherwise, except as permitted under Sections 107 or 108 of the 1976 United States Copyright Act, without either the prior written permission of the Publisher, or authorization through of the appropriate per-copy fee to the Copyright Clearance Center, 222 Rosewood Drive, Danvers, MA 01923, (978) 750-8400, fax (978) 750-4744. Requests to the Publisher for permission should be addressed to the Permissions Department, John Wiley & Sons, Inc., 605 Third Avenue, New York, NY 10158-0012, (212) 850-601 1, fax (212) 850-6008, E-Mail: [email protected]. Library of Congress Cataloging-in-Publication Data: Wangler, Thomas, 1937- Principles of RF linear accelerators / by Thomas P. Wangler. P. cm. - (Wiley serie's. in. be'pm physics and accelerator technology) Includes bibliographical references and index. ISBN 0-471-16814-9 (cloth : alk. paper) 1. Linear accelerators. I. Title. 11. Series. QC787.L5W36 1998 539.7' 33--dc21 Printed in the United States of America. To my wife, Julie, and to the memory of my fother, Froncis X. Wangler Preface xiii 1 Introduction 1 Linear Accelerators: Historical Perspective / 2 Linac Structures / 6 Linac Beam Dynamics / 11 Multiparticle Effects / 13 Applications of Modern RF Linacs / 14 Accelerator-Physics Units, Unit Conversions, and Physical Constants / 18 Useful Relativistic Mechanics Relationships / 19 Maxwell's Equations / 19 Conducting Walls / 22 Group Velocity and Energy Velocity / 23 Coaxial Resonator / 25 Transverse Magnetic Mode of a Circular Cylindrical Cavity / 28 Cylindrical Resonator Transverse Magnetic Modes / 30 Cylindrical Resonator Transverse Electric Modes / 30 2 RF Acceleration in Linats 2.1 Particle Acceleration in an RF Field / 35 2.2 Energy Gain on Axis in an RF Gap / 36 *2.3 Longitudinal Electric Field as a Fourier Integral / 40 *2.4 Transit-Time-Factor Models / 43 2.5 Power and Acceleration Efficiency Figures of Merit / 46 2.6 Cavity Design Issues / 48 2.7 Frequency Scaling of Cavity Parameters / 50 2.8 Linac Economics / 51 / Problems 53 vii viii = CONTENTS 3 Periodic Accelerating Structures 57 Synchronous Acceleration and Periodic Structures / 57 Floquet Theorem and Space Harmonics / 58 General Description of Periodic Structures / 62 Equivalent-Circuit Model for Periodic Structures / 63 Periodic Array of Low-Pass Filters / 65 Periodic Array of Electrically Coupled Circuits / 66 Periodic Array of Magnetically Coupled Circuits / 68 Periodic Array of Cavities with Resonant Coupling Element / 69 Measurement of Dispersion Curves in Periodic Structures / 71 Traveling-Wave Linac Structures / 73 / Analysis of Periodic Iris-Loaded Waveguide 74 Constant-Impedance Traveling-Wave Structure / 78 Constant-Gradient Structure / 80 Comparison of Different Normal Modes for Particle Acceleration / 82 Physics Regimes of Traveling- and Standing-Wave Structures / 85 Problems / 86 4 Standard Linac Structures 4.1 Independent-Cavity Linacs / 88 4.2 Wideroe Linac / 93 4.3 Alvarez Drift-Tube Linac / 95 4.4 Design of Drift-Tube Linacs / 101 / 4.5 Coupled-Cavity Linacs 102 4.6 Three Coupled Oscillators / 103 4.7 Perturbation Theory and Effects of Resonant Frequency Errors / 106 4.8 Effects from Ohmic Power Dissipation / 108 4.9 General Problem of N + 1 Coupled Oscillators / 110 4.10 Biperiodic Structures for Linacs / 11 3 4.1 1 Design of Coupled-Cavity Linacs / 1 17 *4.12 Intercell Coupling Constant / 120 "4.13 Decoupling of Cavities Connected by a Beam Pipe / 122 4.14 Resonant Coupling / 123 Problems / 128 5 Microwave Topics for Linacs 5.1 Shunt Resonant-Circuit Model / 130 *5.2 Theory of Resonant Cavities / 132 *5.3 Coupling to Cavities / 134 -. CONTENTS IZIZII IX 5.4 Equivalent Circuit for a Resonant Cavity System / 135 *5.5 Equivalent Circuit for a Cavity Coupled to Two Waveguides / 140 *5.6 Transient Behavior of a Resonant-Cavity System / 141 *5.7 Wave Description of a Waveguide to Cavity Coupling / 144 5.8 Microwaye Power Systems for Linacs / 152 5.9 Multipacting / 155 5.10 Electron Field Emission / 159 5.1 I RF Electric Breakdown: Kilpatrick Criterion / 160 5.12 Adiabatic Invariant of an Oscillator / 161 / 5.13 Slater Perturbation Theorem 162 *5.14 Quasistatic Approximation / 165 *5.15 Panofsky-Wenzel Theorem / 166 Problems / 168 6 Longitudinal Particle Dynamics 6.1 Longitudinal Focusing / 173 6.2 Difference Equations of Longitudinal Motion for Standing-Wave Linacs / 173 6.3 Differential Equations of Longitudinal Motion / 175 6.4 Longitudinal Motion When ~ccelerationR ate Is Small / 175 / *6.5 Hamiltonian and Liouville's Theorem 179 6.6 Small- Amplitude Oscillations / I84 6.7 Adiabatic Phase Damping / 185 *6.8 Longitudinal Dynamics of Ion Beams in Coupled-Cavity / Linacs 187 *6.9 Longitudinal Dynamics in Independent-Cavity Ion Linacs / 188 *6.10 Longitudinal Dynamics of Low-Energy Beams Injected into a v = c Linac / 190 Problems / 193 7 Transverse Particle Dynamics Transverse RF Focusing and Defocusing / 195 Radial Impulse from a Synchronous Traveling Wave / 196 / Radial Impulse near the Axis in an Accelerating Gap 198 Including Electrostatic Focusing in the Gap / 201 Coordinate Transformation Through an Accelerating Gap / 202 Quadrupole Focusing in a Linac / 203 Transfer Matrix Solution of Hill's Equation / 205 Phase-Amplitude Form of Solution to Hill's Equation / 207 / Transfer Matrix Through One Period 208 Thin-Lens FODO Periodic Lattice / 209 Transverse Stability Plot in a Linac / 21 1

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The first book that provides a single source of introductory information an all linear accelerators, including electron and ion accelerators.
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