An introduction to the physics of particle accelerators /:
This book provides a concise and coherent introduction to the physics of particle accelerators. It is written for students at the graduate level in physics and provides the elements to tackle the main problems regarding cyclic particle accelerators. In particular, a thorough introduction is given on...
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Format: | Elektronisch E-Book |
Sprache: | English |
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Singapore ; River Edge, N.J. :
World Scientific,
1994, ©1991.
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Online-Zugang: | Volltext |
Zusammenfassung: | This book provides a concise and coherent introduction to the physics of particle accelerators. It is written for students at the graduate level in physics and provides the elements to tackle the main problems regarding cyclic particle accelerators. In particular, a thorough introduction is given on the topics of such machines. Phase focusing is also fully treated, together with fundamental topics like synchrotron radiation and linear and nonlinear resonances. A chapter is devoted to rf linear accelerators and rf structures. The chapter on space charge effects deals with tune-shifts and beam-b. |
Beschreibung: | 1 online resource (xii, 250 pages :) : illustrations |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9789814439633 9814439630 1299280919 9781299280915 |
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245 | 1 | 3 | |a An introduction to the physics of particle accelerators / |c Mario Conte, William W. MacKay. |
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505 | 0 | |a Table of Contents; Preface; 1 Introduction; 1.1 Motivation and overview; 1.2 Direct-voltage accelerators; 1.3 A review of relativistic particle motion; 1.4 Linear accelerators with oscillating electric fields; 1.5 Circular machines; 1.6 Momentum compaction and the synchronous particle; Problems; References for Chapter 1; 2 Equations of Motion for Weak Focusing; 2.1 Reference system for a circular machine; 2.2 Equations of motion; 2.3 Solutions of the motion equations and transfer matrices; 2.4 Momentum dispersion; 2.5 Weak focusing synchrotron; 2.6 Momentum compaction factor; Problems | |
505 | 8 | |a 5.1 Transfer matrix approach and stability of the linear system5.2 Analytical approach; 5.3 Emittances; 5.4 Adiabatic invariants; 5.5 Dispersion; 5.6 Momentum compaction; Problems; References for Chapter 5; 6 Lattice Exercises; 6.1 The FODO Lattice; 6.2 Stability Diagrams; 6.3 FODO Cell Dispersion; 6.4 A few explicit forms of the Twiss Matrix; 6.5 Insertions; 6.6 Dispersion Suppressors; 6.7 Low beta insertion; 6.8 Coupled motion; 6.9 Chromaticity; Problems; References for Chapter 6; 7 Synchrotron Oscillations; 7.1 Transition Energy; 7.2 The Phase Stability Principle; 7.3 Resonant Acceleration | |
505 | 8 | |a 7.4 The phase oscillation equation7.5 Large oscillations; 7.6 Hamiltonian formalism; 7.7 Adiabatic invariant; 7.8 Bunch manipulations; Problems; References for Chapter 7; 8 Synchrotron Radiation; 8.1 Radiated Power; 8.2 Radiation Damping of Energy Oscillations; 8.3 Damping of the Vertical Oscillations; 8.4 Damping of the Horizontal Oscillations; 8.5 Damping Partition Numbers; 8.6 Frequency Spectrum of the Radiation; 8.7 Energy Spread and Bunch Length; 8.8 Transverse Excitations; 8.9 Beam Lifetime Considerations; Problems; References for Chapter 8; 9 RF Linear Accelerators | |
505 | 8 | |a 9.1 Maxwell's equations and waves9.2 Cylindrical waveguides; 9.3 Electron capture; 9.4 Cylindrical cavities; 9.5 Longitudinal equations of motion in a linac; 9.6 Transverse defocusing; 9.7 Radio frequency quadrupoles; Problems; References for Chapter 9; 10 Resonances; 10.1 Integer Resonance; 10.2 Linear coupling2; 10.3 Assessment of resonances; 10.4 Krylov-Bogoliubov method3; 10.5 Half-integer resonance; 10.6 The nonlinear third-integer resonance; 10.7 Recapitulation; Problems; References for Chapter 10; 11 Space-Charge Effects; 11.1 Transverse effects: tune shift | |
520 | |a This book provides a concise and coherent introduction to the physics of particle accelerators. It is written for students at the graduate level in physics and provides the elements to tackle the main problems regarding cyclic particle accelerators. In particular, a thorough introduction is given on the topics of such machines. Phase focusing is also fully treated, together with fundamental topics like synchrotron radiation and linear and nonlinear resonances. A chapter is devoted to rf linear accelerators and rf structures. The chapter on space charge effects deals with tune-shifts and beam-b. | ||
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contents | Table of Contents; Preface; 1 Introduction; 1.1 Motivation and overview; 1.2 Direct-voltage accelerators; 1.3 A review of relativistic particle motion; 1.4 Linear accelerators with oscillating electric fields; 1.5 Circular machines; 1.6 Momentum compaction and the synchronous particle; Problems; References for Chapter 1; 2 Equations of Motion for Weak Focusing; 2.1 Reference system for a circular machine; 2.2 Equations of motion; 2.3 Solutions of the motion equations and transfer matrices; 2.4 Momentum dispersion; 2.5 Weak focusing synchrotron; 2.6 Momentum compaction factor; Problems 5.1 Transfer matrix approach and stability of the linear system5.2 Analytical approach; 5.3 Emittances; 5.4 Adiabatic invariants; 5.5 Dispersion; 5.6 Momentum compaction; Problems; References for Chapter 5; 6 Lattice Exercises; 6.1 The FODO Lattice; 6.2 Stability Diagrams; 6.3 FODO Cell Dispersion; 6.4 A few explicit forms of the Twiss Matrix; 6.5 Insertions; 6.6 Dispersion Suppressors; 6.7 Low beta insertion; 6.8 Coupled motion; 6.9 Chromaticity; Problems; References for Chapter 6; 7 Synchrotron Oscillations; 7.1 Transition Energy; 7.2 The Phase Stability Principle; 7.3 Resonant Acceleration 7.4 The phase oscillation equation7.5 Large oscillations; 7.6 Hamiltonian formalism; 7.7 Adiabatic invariant; 7.8 Bunch manipulations; Problems; References for Chapter 7; 8 Synchrotron Radiation; 8.1 Radiated Power; 8.2 Radiation Damping of Energy Oscillations; 8.3 Damping of the Vertical Oscillations; 8.4 Damping of the Horizontal Oscillations; 8.5 Damping Partition Numbers; 8.6 Frequency Spectrum of the Radiation; 8.7 Energy Spread and Bunch Length; 8.8 Transverse Excitations; 8.9 Beam Lifetime Considerations; Problems; References for Chapter 8; 9 RF Linear Accelerators 9.1 Maxwell's equations and waves9.2 Cylindrical waveguides; 9.3 Electron capture; 9.4 Cylindrical cavities; 9.5 Longitudinal equations of motion in a linac; 9.6 Transverse defocusing; 9.7 Radio frequency quadrupoles; Problems; References for Chapter 9; 10 Resonances; 10.1 Integer Resonance; 10.2 Linear coupling2; 10.3 Assessment of resonances; 10.4 Krylov-Bogoliubov method3; 10.5 Half-integer resonance; 10.6 The nonlinear third-integer resonance; 10.7 Recapitulation; Problems; References for Chapter 10; 11 Space-Charge Effects; 11.1 Transverse effects: tune shift |
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indexdate | 2024-11-27T13:25:23Z |
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spelling | Conte, Mario. An introduction to the physics of particle accelerators / Mario Conte, William W. MacKay. Singapore ; River Edge, N.J. : World Scientific, 1994, ©1991. 1 online resource (xii, 250 pages :) : illustrations text txt rdacontent computer c rdamedia online resource cr rdacarrier Includes bibliographical references and index. Table of Contents; Preface; 1 Introduction; 1.1 Motivation and overview; 1.2 Direct-voltage accelerators; 1.3 A review of relativistic particle motion; 1.4 Linear accelerators with oscillating electric fields; 1.5 Circular machines; 1.6 Momentum compaction and the synchronous particle; Problems; References for Chapter 1; 2 Equations of Motion for Weak Focusing; 2.1 Reference system for a circular machine; 2.2 Equations of motion; 2.3 Solutions of the motion equations and transfer matrices; 2.4 Momentum dispersion; 2.5 Weak focusing synchrotron; 2.6 Momentum compaction factor; Problems 5.1 Transfer matrix approach and stability of the linear system5.2 Analytical approach; 5.3 Emittances; 5.4 Adiabatic invariants; 5.5 Dispersion; 5.6 Momentum compaction; Problems; References for Chapter 5; 6 Lattice Exercises; 6.1 The FODO Lattice; 6.2 Stability Diagrams; 6.3 FODO Cell Dispersion; 6.4 A few explicit forms of the Twiss Matrix; 6.5 Insertions; 6.6 Dispersion Suppressors; 6.7 Low beta insertion; 6.8 Coupled motion; 6.9 Chromaticity; Problems; References for Chapter 6; 7 Synchrotron Oscillations; 7.1 Transition Energy; 7.2 The Phase Stability Principle; 7.3 Resonant Acceleration 7.4 The phase oscillation equation7.5 Large oscillations; 7.6 Hamiltonian formalism; 7.7 Adiabatic invariant; 7.8 Bunch manipulations; Problems; References for Chapter 7; 8 Synchrotron Radiation; 8.1 Radiated Power; 8.2 Radiation Damping of Energy Oscillations; 8.3 Damping of the Vertical Oscillations; 8.4 Damping of the Horizontal Oscillations; 8.5 Damping Partition Numbers; 8.6 Frequency Spectrum of the Radiation; 8.7 Energy Spread and Bunch Length; 8.8 Transverse Excitations; 8.9 Beam Lifetime Considerations; Problems; References for Chapter 8; 9 RF Linear Accelerators 9.1 Maxwell's equations and waves9.2 Cylindrical waveguides; 9.3 Electron capture; 9.4 Cylindrical cavities; 9.5 Longitudinal equations of motion in a linac; 9.6 Transverse defocusing; 9.7 Radio frequency quadrupoles; Problems; References for Chapter 9; 10 Resonances; 10.1 Integer Resonance; 10.2 Linear coupling2; 10.3 Assessment of resonances; 10.4 Krylov-Bogoliubov method3; 10.5 Half-integer resonance; 10.6 The nonlinear third-integer resonance; 10.7 Recapitulation; Problems; References for Chapter 10; 11 Space-Charge Effects; 11.1 Transverse effects: tune shift This book provides a concise and coherent introduction to the physics of particle accelerators. It is written for students at the graduate level in physics and provides the elements to tackle the main problems regarding cyclic particle accelerators. In particular, a thorough introduction is given on the topics of such machines. Phase focusing is also fully treated, together with fundamental topics like synchrotron radiation and linear and nonlinear resonances. A chapter is devoted to rf linear accelerators and rf structures. The chapter on space charge effects deals with tune-shifts and beam-b. English. Particle accelerators. http://id.loc.gov/authorities/subjects/sh85098356 Nuclear physics Instruments. http://id.loc.gov/authorities/subjects/sh85093026 Particle Accelerators https://id.nlm.nih.gov/mesh/D010315 Accélérateurs de particules. Physique nucléaire Instruments. SCIENCE Physics Nuclear. bisacsh Nuclear physics Instruments fast Particle accelerators fast MacKay, William W. Print version: Conte, Mario. Introduction to the physics of particle accelerators. Singapore ; River Edge, N.J. : World Scientific, 1994, ©1991 (DLC) 95135912 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=545443 Volltext |
spellingShingle | Conte, Mario An introduction to the physics of particle accelerators / Table of Contents; Preface; 1 Introduction; 1.1 Motivation and overview; 1.2 Direct-voltage accelerators; 1.3 A review of relativistic particle motion; 1.4 Linear accelerators with oscillating electric fields; 1.5 Circular machines; 1.6 Momentum compaction and the synchronous particle; Problems; References for Chapter 1; 2 Equations of Motion for Weak Focusing; 2.1 Reference system for a circular machine; 2.2 Equations of motion; 2.3 Solutions of the motion equations and transfer matrices; 2.4 Momentum dispersion; 2.5 Weak focusing synchrotron; 2.6 Momentum compaction factor; Problems 5.1 Transfer matrix approach and stability of the linear system5.2 Analytical approach; 5.3 Emittances; 5.4 Adiabatic invariants; 5.5 Dispersion; 5.6 Momentum compaction; Problems; References for Chapter 5; 6 Lattice Exercises; 6.1 The FODO Lattice; 6.2 Stability Diagrams; 6.3 FODO Cell Dispersion; 6.4 A few explicit forms of the Twiss Matrix; 6.5 Insertions; 6.6 Dispersion Suppressors; 6.7 Low beta insertion; 6.8 Coupled motion; 6.9 Chromaticity; Problems; References for Chapter 6; 7 Synchrotron Oscillations; 7.1 Transition Energy; 7.2 The Phase Stability Principle; 7.3 Resonant Acceleration 7.4 The phase oscillation equation7.5 Large oscillations; 7.6 Hamiltonian formalism; 7.7 Adiabatic invariant; 7.8 Bunch manipulations; Problems; References for Chapter 7; 8 Synchrotron Radiation; 8.1 Radiated Power; 8.2 Radiation Damping of Energy Oscillations; 8.3 Damping of the Vertical Oscillations; 8.4 Damping of the Horizontal Oscillations; 8.5 Damping Partition Numbers; 8.6 Frequency Spectrum of the Radiation; 8.7 Energy Spread and Bunch Length; 8.8 Transverse Excitations; 8.9 Beam Lifetime Considerations; Problems; References for Chapter 8; 9 RF Linear Accelerators 9.1 Maxwell's equations and waves9.2 Cylindrical waveguides; 9.3 Electron capture; 9.4 Cylindrical cavities; 9.5 Longitudinal equations of motion in a linac; 9.6 Transverse defocusing; 9.7 Radio frequency quadrupoles; Problems; References for Chapter 9; 10 Resonances; 10.1 Integer Resonance; 10.2 Linear coupling2; 10.3 Assessment of resonances; 10.4 Krylov-Bogoliubov method3; 10.5 Half-integer resonance; 10.6 The nonlinear third-integer resonance; 10.7 Recapitulation; Problems; References for Chapter 10; 11 Space-Charge Effects; 11.1 Transverse effects: tune shift Particle accelerators. http://id.loc.gov/authorities/subjects/sh85098356 Nuclear physics Instruments. http://id.loc.gov/authorities/subjects/sh85093026 Particle Accelerators https://id.nlm.nih.gov/mesh/D010315 Accélérateurs de particules. Physique nucléaire Instruments. SCIENCE Physics Nuclear. bisacsh Nuclear physics Instruments fast Particle accelerators fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85098356 http://id.loc.gov/authorities/subjects/sh85093026 https://id.nlm.nih.gov/mesh/D010315 |
title | An introduction to the physics of particle accelerators / |
title_auth | An introduction to the physics of particle accelerators / |
title_exact_search | An introduction to the physics of particle accelerators / |
title_full | An introduction to the physics of particle accelerators / Mario Conte, William W. MacKay. |
title_fullStr | An introduction to the physics of particle accelerators / Mario Conte, William W. MacKay. |
title_full_unstemmed | An introduction to the physics of particle accelerators / Mario Conte, William W. MacKay. |
title_short | An introduction to the physics of particle accelerators / |
title_sort | introduction to the physics of particle accelerators |
topic | Particle accelerators. http://id.loc.gov/authorities/subjects/sh85098356 Nuclear physics Instruments. http://id.loc.gov/authorities/subjects/sh85093026 Particle Accelerators https://id.nlm.nih.gov/mesh/D010315 Accélérateurs de particules. Physique nucléaire Instruments. SCIENCE Physics Nuclear. bisacsh Nuclear physics Instruments fast Particle accelerators fast |
topic_facet | Particle accelerators. Nuclear physics Instruments. Particle Accelerators Accélérateurs de particules. Physique nucléaire Instruments. SCIENCE Physics Nuclear. Nuclear physics Instruments Particle accelerators |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=545443 |
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